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Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001/*
2 * linux/drivers/mtd/onenand/onenand_base.c
3 *
Kyungmin Park75384b02007-01-18 11:10:57 +09004 * Copyright (C) 2005-2007 Samsung Electronics
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01005 * Kyungmin Park <kyungmin.park@samsung.com>
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
10 */
11
12#include <linux/kernel.h>
13#include <linux/module.h>
14#include <linux/init.h>
Andrew Morton015953d2005-11-08 21:34:28 -080015#include <linux/sched.h>
Kyungmin Park2c221202006-11-16 11:23:48 +090016#include <linux/interrupt.h>
Andrew Morton015953d2005-11-08 21:34:28 -080017#include <linux/jiffies.h>
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010018#include <linux/mtd/mtd.h>
19#include <linux/mtd/onenand.h>
20#include <linux/mtd/partitions.h>
21
22#include <asm/io.h>
23
24/**
25 * onenand_oob_64 - oob info for large (2KB) page
26 */
Thomas Gleixner5bd34c02006-05-27 22:16:10 +020027static struct nand_ecclayout onenand_oob_64 = {
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010028 .eccbytes = 20,
29 .eccpos = {
30 8, 9, 10, 11, 12,
31 24, 25, 26, 27, 28,
32 40, 41, 42, 43, 44,
33 56, 57, 58, 59, 60,
34 },
35 .oobfree = {
36 {2, 3}, {14, 2}, {18, 3}, {30, 2},
Jarkko Lavinend9777f12006-05-12 17:02:35 +030037 {34, 3}, {46, 2}, {50, 3}, {62, 2}
38 }
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010039};
40
41/**
42 * onenand_oob_32 - oob info for middle (1KB) page
43 */
Thomas Gleixner5bd34c02006-05-27 22:16:10 +020044static struct nand_ecclayout onenand_oob_32 = {
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010045 .eccbytes = 10,
46 .eccpos = {
47 8, 9, 10, 11, 12,
48 24, 25, 26, 27, 28,
49 },
50 .oobfree = { {2, 3}, {14, 2}, {18, 3}, {30, 2} }
51};
52
53static const unsigned char ffchars[] = {
54 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
55 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 16 */
56 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
57 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 32 */
58 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
59 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 48 */
60 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
61 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 64 */
62};
63
64/**
65 * onenand_readw - [OneNAND Interface] Read OneNAND register
66 * @param addr address to read
67 *
68 * Read OneNAND register
69 */
70static unsigned short onenand_readw(void __iomem *addr)
71{
72 return readw(addr);
73}
74
75/**
76 * onenand_writew - [OneNAND Interface] Write OneNAND register with value
77 * @param value value to write
78 * @param addr address to write
79 *
80 * Write OneNAND register with value
81 */
82static void onenand_writew(unsigned short value, void __iomem *addr)
83{
84 writew(value, addr);
85}
86
87/**
88 * onenand_block_address - [DEFAULT] Get block address
Kyungmin Park83a36832005-09-29 04:53:16 +010089 * @param this onenand chip data structure
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010090 * @param block the block
91 * @return translated block address if DDP, otherwise same
92 *
93 * Setup Start Address 1 Register (F100h)
94 */
Kyungmin Park83a36832005-09-29 04:53:16 +010095static int onenand_block_address(struct onenand_chip *this, int block)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +010096{
Kyungmin Park738d61f2007-01-15 17:09:14 +090097 /* Device Flash Core select, NAND Flash Block Address */
98 if (block & this->density_mask)
99 return ONENAND_DDP_CHIP1 | (block ^ this->density_mask);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100100
101 return block;
102}
103
104/**
105 * onenand_bufferram_address - [DEFAULT] Get bufferram address
Kyungmin Park83a36832005-09-29 04:53:16 +0100106 * @param this onenand chip data structure
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100107 * @param block the block
108 * @return set DBS value if DDP, otherwise 0
109 *
110 * Setup Start Address 2 Register (F101h) for DDP
111 */
Kyungmin Park83a36832005-09-29 04:53:16 +0100112static int onenand_bufferram_address(struct onenand_chip *this, int block)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100113{
Kyungmin Park738d61f2007-01-15 17:09:14 +0900114 /* Device BufferRAM Select */
115 if (block & this->density_mask)
116 return ONENAND_DDP_CHIP1;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100117
Kyungmin Park738d61f2007-01-15 17:09:14 +0900118 return ONENAND_DDP_CHIP0;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100119}
120
121/**
122 * onenand_page_address - [DEFAULT] Get page address
123 * @param page the page address
124 * @param sector the sector address
125 * @return combined page and sector address
126 *
127 * Setup Start Address 8 Register (F107h)
128 */
129static int onenand_page_address(int page, int sector)
130{
131 /* Flash Page Address, Flash Sector Address */
132 int fpa, fsa;
133
134 fpa = page & ONENAND_FPA_MASK;
135 fsa = sector & ONENAND_FSA_MASK;
136
137 return ((fpa << ONENAND_FPA_SHIFT) | fsa);
138}
139
140/**
141 * onenand_buffer_address - [DEFAULT] Get buffer address
142 * @param dataram1 DataRAM index
143 * @param sectors the sector address
144 * @param count the number of sectors
145 * @return the start buffer value
146 *
147 * Setup Start Buffer Register (F200h)
148 */
149static int onenand_buffer_address(int dataram1, int sectors, int count)
150{
151 int bsa, bsc;
152
153 /* BufferRAM Sector Address */
154 bsa = sectors & ONENAND_BSA_MASK;
155
156 if (dataram1)
157 bsa |= ONENAND_BSA_DATARAM1; /* DataRAM1 */
158 else
159 bsa |= ONENAND_BSA_DATARAM0; /* DataRAM0 */
160
161 /* BufferRAM Sector Count */
162 bsc = count & ONENAND_BSC_MASK;
163
164 return ((bsa << ONENAND_BSA_SHIFT) | bsc);
165}
166
167/**
168 * onenand_command - [DEFAULT] Send command to OneNAND device
169 * @param mtd MTD device structure
170 * @param cmd the command to be sent
171 * @param addr offset to read from or write to
172 * @param len number of bytes to read or write
173 *
174 * Send command to OneNAND device. This function is used for middle/large page
175 * devices (1KB/2KB Bytes per page)
176 */
177static int onenand_command(struct mtd_info *mtd, int cmd, loff_t addr, size_t len)
178{
179 struct onenand_chip *this = mtd->priv;
Kyungmin Park493c6462006-05-12 17:03:07 +0300180 int value, readcmd = 0, block_cmd = 0;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100181 int block, page;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100182
183 /* Address translation */
184 switch (cmd) {
185 case ONENAND_CMD_UNLOCK:
186 case ONENAND_CMD_LOCK:
187 case ONENAND_CMD_LOCK_TIGHT:
Kyungmin Park28b79ff2006-09-26 09:45:28 +0000188 case ONENAND_CMD_UNLOCK_ALL:
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100189 block = -1;
190 page = -1;
191 break;
192
193 case ONENAND_CMD_ERASE:
194 case ONENAND_CMD_BUFFERRAM:
Kyungmin Park493c6462006-05-12 17:03:07 +0300195 case ONENAND_CMD_OTP_ACCESS:
196 block_cmd = 1;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100197 block = (int) (addr >> this->erase_shift);
198 page = -1;
199 break;
200
201 default:
202 block = (int) (addr >> this->erase_shift);
203 page = (int) (addr >> this->page_shift);
204 page &= this->page_mask;
205 break;
206 }
207
208 /* NOTE: The setting order of the registers is very important! */
209 if (cmd == ONENAND_CMD_BUFFERRAM) {
210 /* Select DataRAM for DDP */
Kyungmin Park83a36832005-09-29 04:53:16 +0100211 value = onenand_bufferram_address(this, block);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100212 this->write_word(value, this->base + ONENAND_REG_START_ADDRESS2);
213
214 /* Switch to the next data buffer */
215 ONENAND_SET_NEXT_BUFFERRAM(this);
216
217 return 0;
218 }
219
220 if (block != -1) {
221 /* Write 'DFS, FBA' of Flash */
Kyungmin Park83a36832005-09-29 04:53:16 +0100222 value = onenand_block_address(this, block);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100223 this->write_word(value, this->base + ONENAND_REG_START_ADDRESS1);
Kyungmin Park3cecf692006-05-12 17:02:51 +0300224
Kyungmin Park75287072006-05-12 17:03:23 +0300225 if (block_cmd) {
Kyungmin Park3cecf692006-05-12 17:02:51 +0300226 /* Select DataRAM for DDP */
227 value = onenand_bufferram_address(this, block);
228 this->write_word(value, this->base + ONENAND_REG_START_ADDRESS2);
229 }
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100230 }
231
232 if (page != -1) {
Kyungmin Park60d84f92006-12-22 16:21:54 +0900233 /* Now we use page size operation */
234 int sectors = 4, count = 4;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100235 int dataram;
236
237 switch (cmd) {
238 case ONENAND_CMD_READ:
239 case ONENAND_CMD_READOOB:
240 dataram = ONENAND_SET_NEXT_BUFFERRAM(this);
241 readcmd = 1;
242 break;
243
244 default:
245 dataram = ONENAND_CURRENT_BUFFERRAM(this);
246 break;
247 }
248
249 /* Write 'FPA, FSA' of Flash */
250 value = onenand_page_address(page, sectors);
251 this->write_word(value, this->base + ONENAND_REG_START_ADDRESS8);
252
253 /* Write 'BSA, BSC' of DataRAM */
254 value = onenand_buffer_address(dataram, sectors, count);
255 this->write_word(value, this->base + ONENAND_REG_START_BUFFER);
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +0000256
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100257 if (readcmd) {
258 /* Select DataRAM for DDP */
Kyungmin Park83a36832005-09-29 04:53:16 +0100259 value = onenand_bufferram_address(this, block);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100260 this->write_word(value, this->base + ONENAND_REG_START_ADDRESS2);
261 }
262 }
263
264 /* Interrupt clear */
265 this->write_word(ONENAND_INT_CLEAR, this->base + ONENAND_REG_INTERRUPT);
266
267 /* Write command */
268 this->write_word(cmd, this->base + ONENAND_REG_COMMAND);
269
270 return 0;
271}
272
273/**
274 * onenand_wait - [DEFAULT] wait until the command is done
275 * @param mtd MTD device structure
276 * @param state state to select the max. timeout value
277 *
278 * Wait for command done. This applies to all OneNAND command
279 * Read can take up to 30us, erase up to 2ms and program up to 350us
280 * according to general OneNAND specs
281 */
282static int onenand_wait(struct mtd_info *mtd, int state)
283{
284 struct onenand_chip * this = mtd->priv;
285 unsigned long timeout;
286 unsigned int flags = ONENAND_INT_MASTER;
287 unsigned int interrupt = 0;
Kyungmin Park2fd32d42006-12-29 11:51:40 +0900288 unsigned int ctrl;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100289
290 /* The 20 msec is enough */
291 timeout = jiffies + msecs_to_jiffies(20);
292 while (time_before(jiffies, timeout)) {
293 interrupt = this->read_word(this->base + ONENAND_REG_INTERRUPT);
294
295 if (interrupt & flags)
296 break;
297
298 if (state != FL_READING)
299 cond_resched();
300 }
301 /* To get correct interrupt status in timeout case */
302 interrupt = this->read_word(this->base + ONENAND_REG_INTERRUPT);
303
304 ctrl = this->read_word(this->base + ONENAND_REG_CTRL_STATUS);
305
306 if (ctrl & ONENAND_CTRL_ERROR) {
Kyungmin Parkcdc00132005-09-03 07:15:48 +0100307 DEBUG(MTD_DEBUG_LEVEL0, "onenand_wait: controller error = 0x%04x\n", ctrl);
Kyungmin Parkf6272482006-12-22 16:02:50 +0900308 if (ctrl & ONENAND_CTRL_LOCK)
309 DEBUG(MTD_DEBUG_LEVEL0, "onenand_wait: it's locked error.\n");
310 return ctrl;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100311 }
312
313 if (interrupt & ONENAND_INT_READ) {
Kyungmin Park2fd32d42006-12-29 11:51:40 +0900314 int ecc = this->read_word(this->base + ONENAND_REG_ECC_STATUS);
Kyungmin Parkf4f91ac2006-11-16 12:03:56 +0900315 if (ecc) {
Kyungmin Parkcdc00132005-09-03 07:15:48 +0100316 DEBUG(MTD_DEBUG_LEVEL0, "onenand_wait: ECC error = 0x%04x\n", ecc);
Kyungmin Parkb3c9f8b2007-01-05 19:16:04 +0900317 if (ecc & ONENAND_ECC_2BIT_ALL) {
Kyungmin Parkf4f91ac2006-11-16 12:03:56 +0900318 mtd->ecc_stats.failed++;
Kyungmin Parkb3c9f8b2007-01-05 19:16:04 +0900319 return ecc;
320 } else if (ecc & ONENAND_ECC_1BIT_ALL)
Kyungmin Parkf4f91ac2006-11-16 12:03:56 +0900321 mtd->ecc_stats.corrected++;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100322 }
Adrian Hunter9d032802007-01-10 07:51:26 +0200323 } else if (state == FL_READING) {
324 printk(KERN_ERR "onenand_wait: read timeout! ctrl=0x%04x intr=0x%04x\n", ctrl, interrupt);
325 return -EIO;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100326 }
327
328 return 0;
329}
330
Kyungmin Park2c221202006-11-16 11:23:48 +0900331/*
332 * onenand_interrupt - [DEFAULT] onenand interrupt handler
333 * @param irq onenand interrupt number
334 * @param dev_id interrupt data
335 *
336 * complete the work
337 */
338static irqreturn_t onenand_interrupt(int irq, void *data)
339{
340 struct onenand_chip *this = (struct onenand_chip *) data;
341
342 /* To handle shared interrupt */
343 if (!this->complete.done)
344 complete(&this->complete);
345
346 return IRQ_HANDLED;
347}
348
349/*
350 * onenand_interrupt_wait - [DEFAULT] wait until the command is done
351 * @param mtd MTD device structure
352 * @param state state to select the max. timeout value
353 *
354 * Wait for command done.
355 */
356static int onenand_interrupt_wait(struct mtd_info *mtd, int state)
357{
358 struct onenand_chip *this = mtd->priv;
359
Kyungmin Park2c221202006-11-16 11:23:48 +0900360 wait_for_completion(&this->complete);
361
362 return onenand_wait(mtd, state);
363}
364
365/*
366 * onenand_try_interrupt_wait - [DEFAULT] try interrupt wait
367 * @param mtd MTD device structure
368 * @param state state to select the max. timeout value
369 *
370 * Try interrupt based wait (It is used one-time)
371 */
372static int onenand_try_interrupt_wait(struct mtd_info *mtd, int state)
373{
374 struct onenand_chip *this = mtd->priv;
375 unsigned long remain, timeout;
376
377 /* We use interrupt wait first */
378 this->wait = onenand_interrupt_wait;
379
Kyungmin Park2c221202006-11-16 11:23:48 +0900380 timeout = msecs_to_jiffies(100);
381 remain = wait_for_completion_timeout(&this->complete, timeout);
382 if (!remain) {
383 printk(KERN_INFO "OneNAND: There's no interrupt. "
384 "We use the normal wait\n");
385
386 /* Release the irq */
387 free_irq(this->irq, this);
David Woodhousec9ac5972006-11-30 08:17:38 +0000388
Kyungmin Park2c221202006-11-16 11:23:48 +0900389 this->wait = onenand_wait;
390 }
391
392 return onenand_wait(mtd, state);
393}
394
395/*
396 * onenand_setup_wait - [OneNAND Interface] setup onenand wait method
397 * @param mtd MTD device structure
398 *
399 * There's two method to wait onenand work
400 * 1. polling - read interrupt status register
401 * 2. interrupt - use the kernel interrupt method
402 */
403static void onenand_setup_wait(struct mtd_info *mtd)
404{
405 struct onenand_chip *this = mtd->priv;
406 int syscfg;
407
408 init_completion(&this->complete);
409
410 if (this->irq <= 0) {
411 this->wait = onenand_wait;
412 return;
413 }
414
415 if (request_irq(this->irq, &onenand_interrupt,
416 IRQF_SHARED, "onenand", this)) {
417 /* If we can't get irq, use the normal wait */
418 this->wait = onenand_wait;
419 return;
420 }
421
422 /* Enable interrupt */
423 syscfg = this->read_word(this->base + ONENAND_REG_SYS_CFG1);
424 syscfg |= ONENAND_SYS_CFG1_IOBE;
425 this->write_word(syscfg, this->base + ONENAND_REG_SYS_CFG1);
426
427 this->wait = onenand_try_interrupt_wait;
428}
429
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100430/**
431 * onenand_bufferram_offset - [DEFAULT] BufferRAM offset
432 * @param mtd MTD data structure
433 * @param area BufferRAM area
434 * @return offset given area
435 *
436 * Return BufferRAM offset given area
437 */
438static inline int onenand_bufferram_offset(struct mtd_info *mtd, int area)
439{
440 struct onenand_chip *this = mtd->priv;
441
442 if (ONENAND_CURRENT_BUFFERRAM(this)) {
443 if (area == ONENAND_DATARAM)
Joern Engel28318772006-05-22 23:18:05 +0200444 return mtd->writesize;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100445 if (area == ONENAND_SPARERAM)
446 return mtd->oobsize;
447 }
448
449 return 0;
450}
451
452/**
453 * onenand_read_bufferram - [OneNAND Interface] Read the bufferram area
454 * @param mtd MTD data structure
455 * @param area BufferRAM area
456 * @param buffer the databuffer to put/get data
457 * @param offset offset to read from or write to
458 * @param count number of bytes to read/write
459 *
460 * Read the BufferRAM area
461 */
462static int onenand_read_bufferram(struct mtd_info *mtd, int area,
463 unsigned char *buffer, int offset, size_t count)
464{
465 struct onenand_chip *this = mtd->priv;
466 void __iomem *bufferram;
467
468 bufferram = this->base + area;
469
470 bufferram += onenand_bufferram_offset(mtd, area);
471
Kyungmin Park9c01f87d2006-05-12 17:02:31 +0300472 if (ONENAND_CHECK_BYTE_ACCESS(count)) {
473 unsigned short word;
474
475 /* Align with word(16-bit) size */
476 count--;
477
478 /* Read word and save byte */
479 word = this->read_word(bufferram + offset + count);
480 buffer[count] = (word & 0xff);
481 }
482
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100483 memcpy(buffer, bufferram + offset, count);
484
485 return 0;
486}
487
488/**
Kyungmin Park52b0eea2005-09-03 07:07:19 +0100489 * onenand_sync_read_bufferram - [OneNAND Interface] Read the bufferram area with Sync. Burst mode
490 * @param mtd MTD data structure
491 * @param area BufferRAM area
492 * @param buffer the databuffer to put/get data
493 * @param offset offset to read from or write to
494 * @param count number of bytes to read/write
495 *
496 * Read the BufferRAM area with Sync. Burst Mode
497 */
498static int onenand_sync_read_bufferram(struct mtd_info *mtd, int area,
499 unsigned char *buffer, int offset, size_t count)
500{
501 struct onenand_chip *this = mtd->priv;
502 void __iomem *bufferram;
503
504 bufferram = this->base + area;
505
506 bufferram += onenand_bufferram_offset(mtd, area);
507
508 this->mmcontrol(mtd, ONENAND_SYS_CFG1_SYNC_READ);
509
Kyungmin Park9c01f87d2006-05-12 17:02:31 +0300510 if (ONENAND_CHECK_BYTE_ACCESS(count)) {
511 unsigned short word;
512
513 /* Align with word(16-bit) size */
514 count--;
515
516 /* Read word and save byte */
517 word = this->read_word(bufferram + offset + count);
518 buffer[count] = (word & 0xff);
519 }
520
Kyungmin Park52b0eea2005-09-03 07:07:19 +0100521 memcpy(buffer, bufferram + offset, count);
522
523 this->mmcontrol(mtd, 0);
524
525 return 0;
526}
527
528/**
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100529 * onenand_write_bufferram - [OneNAND Interface] Write the bufferram area
530 * @param mtd MTD data structure
531 * @param area BufferRAM area
532 * @param buffer the databuffer to put/get data
533 * @param offset offset to read from or write to
534 * @param count number of bytes to read/write
535 *
536 * Write the BufferRAM area
537 */
538static int onenand_write_bufferram(struct mtd_info *mtd, int area,
539 const unsigned char *buffer, int offset, size_t count)
540{
541 struct onenand_chip *this = mtd->priv;
542 void __iomem *bufferram;
543
544 bufferram = this->base + area;
545
546 bufferram += onenand_bufferram_offset(mtd, area);
547
Kyungmin Park9c01f87d2006-05-12 17:02:31 +0300548 if (ONENAND_CHECK_BYTE_ACCESS(count)) {
549 unsigned short word;
550 int byte_offset;
551
552 /* Align with word(16-bit) size */
553 count--;
554
555 /* Calculate byte access offset */
556 byte_offset = offset + count;
557
558 /* Read word and save byte */
559 word = this->read_word(bufferram + byte_offset);
560 word = (word & ~0xff) | buffer[count];
561 this->write_word(word, bufferram + byte_offset);
562 }
563
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100564 memcpy(bufferram + offset, buffer, count);
565
566 return 0;
567}
568
569/**
570 * onenand_check_bufferram - [GENERIC] Check BufferRAM information
571 * @param mtd MTD data structure
572 * @param addr address to check
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +0000573 * @return 1 if there are valid data, otherwise 0
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100574 *
575 * Check bufferram if there is data we required
576 */
577static int onenand_check_bufferram(struct mtd_info *mtd, loff_t addr)
578{
579 struct onenand_chip *this = mtd->priv;
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900580 int blockpage;
581 unsigned int i;
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +0000582
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900583 blockpage = (int) (addr >> this->page_shift);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100584
585 /* Is there valid data? */
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900586 i = ONENAND_CURRENT_BUFFERRAM(this);
587 if (this->bufferram[i].blockpage == blockpage)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100588 return 1;
589
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900590 /* Check another BufferRAM */
591 i = ONENAND_NEXT_BUFFERRAM(this);
592 if (this->bufferram[i].blockpage == blockpage) {
593 ONENAND_SET_NEXT_BUFFERRAM(this);
594 return 1;
595 }
596
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100597 return 0;
598}
599
600/**
601 * onenand_update_bufferram - [GENERIC] Update BufferRAM information
602 * @param mtd MTD data structure
603 * @param addr address to update
604 * @param valid valid flag
605 *
606 * Update BufferRAM information
607 */
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900608static void onenand_update_bufferram(struct mtd_info *mtd, loff_t addr,
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100609 int valid)
610{
611 struct onenand_chip *this = mtd->priv;
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900612 int blockpage;
613 unsigned int i;
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +0000614
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900615 blockpage = (int) (addr >> this->page_shift);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100616
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900617 /* Invalidate another BufferRAM */
618 i = ONENAND_NEXT_BUFFERRAM(this);
Kyungmin Park5b4246f2007-02-02 09:39:21 +0900619 if (this->bufferram[i].blockpage == blockpage)
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900620 this->bufferram[i].blockpage = -1;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100621
622 /* Update BufferRAM */
623 i = ONENAND_CURRENT_BUFFERRAM(this);
Kyungmin Parkabf3c0f2007-02-02 09:29:36 +0900624 if (valid)
625 this->bufferram[i].blockpage = blockpage;
626 else
627 this->bufferram[i].blockpage = -1;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100628}
629
630/**
631 * onenand_get_device - [GENERIC] Get chip for selected access
632 * @param mtd MTD device structure
633 * @param new_state the state which is requested
634 *
635 * Get the device and lock it for exclusive access
636 */
Kyungmin Parka41371e2005-09-29 03:55:31 +0100637static int onenand_get_device(struct mtd_info *mtd, int new_state)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100638{
639 struct onenand_chip *this = mtd->priv;
640 DECLARE_WAITQUEUE(wait, current);
641
642 /*
643 * Grab the lock and see if the device is available
644 */
645 while (1) {
646 spin_lock(&this->chip_lock);
647 if (this->state == FL_READY) {
648 this->state = new_state;
649 spin_unlock(&this->chip_lock);
650 break;
651 }
Kyungmin Parka41371e2005-09-29 03:55:31 +0100652 if (new_state == FL_PM_SUSPENDED) {
653 spin_unlock(&this->chip_lock);
654 return (this->state == FL_PM_SUSPENDED) ? 0 : -EAGAIN;
655 }
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100656 set_current_state(TASK_UNINTERRUPTIBLE);
657 add_wait_queue(&this->wq, &wait);
658 spin_unlock(&this->chip_lock);
659 schedule();
660 remove_wait_queue(&this->wq, &wait);
661 }
Kyungmin Parka41371e2005-09-29 03:55:31 +0100662
663 return 0;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100664}
665
666/**
667 * onenand_release_device - [GENERIC] release chip
668 * @param mtd MTD device structure
669 *
670 * Deselect, release chip lock and wake up anyone waiting on the device
671 */
672static void onenand_release_device(struct mtd_info *mtd)
673{
674 struct onenand_chip *this = mtd->priv;
675
676 /* Release the chip */
677 spin_lock(&this->chip_lock);
678 this->state = FL_READY;
679 wake_up(&this->wq);
680 spin_unlock(&this->chip_lock);
681}
682
683/**
Thomas Gleixner9223a452006-05-23 17:21:03 +0200684 * onenand_read - [MTD Interface] Read data from flash
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100685 * @param mtd MTD device structure
686 * @param from offset to read from
687 * @param len number of bytes to read
688 * @param retlen pointer to variable to store the number of read bytes
689 * @param buf the databuffer to put data
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100690 *
Thomas Gleixner9223a452006-05-23 17:21:03 +0200691 * Read with ecc
692*/
693static int onenand_read(struct mtd_info *mtd, loff_t from, size_t len,
694 size_t *retlen, u_char *buf)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100695{
696 struct onenand_chip *this = mtd->priv;
Kyungmin Parkf4f91ac2006-11-16 12:03:56 +0900697 struct mtd_ecc_stats stats;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100698 int read = 0, column;
699 int thislen;
Adrian Hunter0fc2cce2007-01-09 17:55:21 +0200700 int ret = 0, boundary = 0;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100701
Thomas Gleixner9223a452006-05-23 17:21:03 +0200702 DEBUG(MTD_DEBUG_LEVEL3, "onenand_read: from = 0x%08x, len = %i\n", (unsigned int) from, (int) len);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100703
704 /* Do not allow reads past end of device */
705 if ((from + len) > mtd->size) {
Thomas Gleixner9223a452006-05-23 17:21:03 +0200706 DEBUG(MTD_DEBUG_LEVEL0, "onenand_read: Attempt read beyond end of device\n");
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100707 *retlen = 0;
708 return -EINVAL;
709 }
710
711 /* Grab the lock and see if the device is available */
712 onenand_get_device(mtd, FL_READING);
713
Kyungmin Parkf4f91ac2006-11-16 12:03:56 +0900714 stats = mtd->ecc_stats;
Artem Bityutskiy61a7e192006-12-26 16:41:24 +0900715
Adrian Huntera8de85d2007-01-04 09:51:26 +0200716 /* Read-while-load method */
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100717
Adrian Huntera8de85d2007-01-04 09:51:26 +0200718 /* Do first load to bufferRAM */
719 if (read < len) {
720 if (!onenand_check_bufferram(mtd, from)) {
721 this->command(mtd, ONENAND_CMD_READ, from, mtd->writesize);
722 ret = this->wait(mtd, FL_READING);
723 onenand_update_bufferram(mtd, from, !ret);
724 }
725 }
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100726
Adrian Huntera8de85d2007-01-04 09:51:26 +0200727 thislen = min_t(int, mtd->writesize, len - read);
728 column = from & (mtd->writesize - 1);
729 if (column + thislen > mtd->writesize)
730 thislen = mtd->writesize - column;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100731
Adrian Huntera8de85d2007-01-04 09:51:26 +0200732 while (!ret) {
733 /* If there is more to load then start next load */
734 from += thislen;
735 if (read + thislen < len) {
736 this->command(mtd, ONENAND_CMD_READ, from, mtd->writesize);
Adrian Hunter0fc2cce2007-01-09 17:55:21 +0200737 /*
738 * Chip boundary handling in DDP
739 * Now we issued chip 1 read and pointed chip 1
740 * bufferam so we have to point chip 0 bufferam.
741 */
Kyungmin Park738d61f2007-01-15 17:09:14 +0900742 if (ONENAND_IS_DDP(this) &&
743 unlikely(from == (this->chipsize >> 1))) {
744 this->write_word(ONENAND_DDP_CHIP0, this->base + ONENAND_REG_START_ADDRESS2);
Adrian Hunter0fc2cce2007-01-09 17:55:21 +0200745 boundary = 1;
746 } else
747 boundary = 0;
Adrian Huntera8de85d2007-01-04 09:51:26 +0200748 ONENAND_SET_PREV_BUFFERRAM(this);
749 }
750 /* While load is going, read from last bufferRAM */
751 this->read_bufferram(mtd, ONENAND_DATARAM, buf, column, thislen);
752 /* See if we are done */
753 read += thislen;
754 if (read == len)
755 break;
756 /* Set up for next read from bufferRAM */
Adrian Hunter0fc2cce2007-01-09 17:55:21 +0200757 if (unlikely(boundary))
Kyungmin Park738d61f2007-01-15 17:09:14 +0900758 this->write_word(ONENAND_DDP_CHIP1, this->base + ONENAND_REG_START_ADDRESS2);
Adrian Huntera8de85d2007-01-04 09:51:26 +0200759 ONENAND_SET_NEXT_BUFFERRAM(this);
760 buf += thislen;
761 thislen = min_t(int, mtd->writesize, len - read);
762 column = 0;
763 cond_resched();
764 /* Now wait for load */
765 ret = this->wait(mtd, FL_READING);
766 onenand_update_bufferram(mtd, from, !ret);
767 }
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100768
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100769 /* Deselect and wake up anyone waiting on the device */
770 onenand_release_device(mtd);
771
772 /*
773 * Return success, if no ECC failures, else -EBADMSG
774 * fs driver will take care of that, because
775 * retlen == desired len and result == -EBADMSG
776 */
777 *retlen = read;
Kyungmin Parkf4f91ac2006-11-16 12:03:56 +0900778
779 if (mtd->ecc_stats.failed - stats.failed)
780 return -EBADMSG;
781
Adrian Huntera8de85d2007-01-04 09:51:26 +0200782 if (ret)
783 return ret;
784
Kyungmin Parkf4f91ac2006-11-16 12:03:56 +0900785 return mtd->ecc_stats.corrected - stats.corrected ? -EUCLEAN : 0;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100786}
787
788/**
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200789 * onenand_transfer_auto_oob - [Internal] oob auto-placement transfer
790 * @param mtd MTD device structure
791 * @param buf destination address
792 * @param column oob offset to read from
793 * @param thislen oob length to read
794 */
795static int onenand_transfer_auto_oob(struct mtd_info *mtd, uint8_t *buf, int column,
796 int thislen)
797{
798 struct onenand_chip *this = mtd->priv;
799 struct nand_oobfree *free;
800 int readcol = column;
801 int readend = column + thislen;
802 int lastgap = 0;
803 uint8_t *oob_buf = this->page_buf + mtd->writesize;
804
805 for (free = this->ecclayout->oobfree; free->length; ++free) {
806 if (readcol >= lastgap)
807 readcol += free->offset - lastgap;
808 if (readend >= lastgap)
809 readend += free->offset - lastgap;
810 lastgap = free->offset + free->length;
811 }
Kyungmin Park4f4fad22007-02-02 09:22:21 +0900812 this->read_bufferram(mtd, ONENAND_SPARERAM, oob_buf, 0, mtd->oobsize);
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200813 for (free = this->ecclayout->oobfree; free->length; ++free) {
814 int free_end = free->offset + free->length;
815 if (free->offset < readend && free_end > readcol) {
816 int st = max_t(int,free->offset,readcol);
817 int ed = min_t(int,free_end,readend);
818 int n = ed - st;
819 memcpy(buf, oob_buf + st, n);
820 buf += n;
821 }
822 }
823 return 0;
824}
825
826/**
Thomas Gleixner8593fbc2006-05-29 03:26:58 +0200827 * onenand_do_read_oob - [MTD Interface] OneNAND read out-of-band
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100828 * @param mtd MTD device structure
829 * @param from offset to read from
830 * @param len number of bytes to read
831 * @param retlen pointer to variable to store the number of read bytes
832 * @param buf the databuffer to put data
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200833 * @param mode operation mode
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100834 *
835 * OneNAND read out-of-band data from the spare area
836 */
Thomas Gleixner8593fbc2006-05-29 03:26:58 +0200837int onenand_do_read_oob(struct mtd_info *mtd, loff_t from, size_t len,
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200838 size_t *retlen, u_char *buf, mtd_oob_mode_t mode)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100839{
840 struct onenand_chip *this = mtd->priv;
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200841 int read = 0, thislen, column, oobsize;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100842 int ret = 0;
843
844 DEBUG(MTD_DEBUG_LEVEL3, "onenand_read_oob: from = 0x%08x, len = %i\n", (unsigned int) from, (int) len);
845
846 /* Initialize return length value */
847 *retlen = 0;
848
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200849 if (mode == MTD_OOB_AUTO)
850 oobsize = this->ecclayout->oobavail;
851 else
852 oobsize = mtd->oobsize;
853
854 column = from & (mtd->oobsize - 1);
855
856 if (unlikely(column >= oobsize)) {
857 DEBUG(MTD_DEBUG_LEVEL0, "onenand_read_oob: Attempted to start read outside oob\n");
858 return -EINVAL;
859 }
860
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100861 /* Do not allow reads past end of device */
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200862 if (unlikely(from >= mtd->size ||
863 column + len > ((mtd->size >> this->page_shift) -
864 (from >> this->page_shift)) * oobsize)) {
865 DEBUG(MTD_DEBUG_LEVEL0, "onenand_read_oob: Attempted to read beyond end of device\n");
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100866 return -EINVAL;
867 }
868
869 /* Grab the lock and see if the device is available */
870 onenand_get_device(mtd, FL_READING);
871
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100872 while (read < len) {
Artem Bityutskiy61a7e192006-12-26 16:41:24 +0900873 cond_resched();
874
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200875 thislen = oobsize - column;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100876 thislen = min_t(int, thislen, len);
877
878 this->command(mtd, ONENAND_CMD_READOOB, from, mtd->oobsize);
879
880 onenand_update_bufferram(mtd, from, 0);
881
882 ret = this->wait(mtd, FL_READING);
883 /* First copy data and check return value for ECC handling */
884
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200885 if (mode == MTD_OOB_AUTO)
886 onenand_transfer_auto_oob(mtd, buf, column, thislen);
887 else
888 this->read_bufferram(mtd, ONENAND_SPARERAM, buf, column, thislen);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100889
Kyungmin Parkf6272482006-12-22 16:02:50 +0900890 if (ret) {
891 DEBUG(MTD_DEBUG_LEVEL0, "onenand_read_oob: read failed = 0x%x\n", ret);
Kyungmin Park5b4246f2007-02-02 09:39:21 +0900892 break;
Kyungmin Parkf6272482006-12-22 16:02:50 +0900893 }
894
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100895 read += thislen;
896
897 if (read == len)
898 break;
899
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100900 buf += thislen;
901
902 /* Read more? */
903 if (read < len) {
904 /* Page size */
Joern Engel28318772006-05-22 23:18:05 +0200905 from += mtd->writesize;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100906 column = 0;
907 }
908 }
909
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100910 /* Deselect and wake up anyone waiting on the device */
911 onenand_release_device(mtd);
912
913 *retlen = read;
914 return ret;
915}
916
Thomas Gleixner8593fbc2006-05-29 03:26:58 +0200917/**
918 * onenand_read_oob - [MTD Interface] NAND write data and/or out-of-band
919 * @mtd: MTD device structure
920 * @from: offset to read from
921 * @ops: oob operation description structure
922 */
923static int onenand_read_oob(struct mtd_info *mtd, loff_t from,
924 struct mtd_oob_ops *ops)
925{
Kyungmin Park4f4fad22007-02-02 09:22:21 +0900926 switch (ops->mode) {
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200927 case MTD_OOB_PLACE:
928 case MTD_OOB_AUTO:
929 break;
930 case MTD_OOB_RAW:
Kyungmin Park4f4fad22007-02-02 09:22:21 +0900931 /* Not implemented yet */
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200932 default:
933 return -EINVAL;
934 }
Kyungmin Park66a1e422006-12-11 01:34:23 +0000935 return onenand_do_read_oob(mtd, from + ops->ooboffs, ops->ooblen,
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200936 &ops->oobretlen, ops->oobbuf, ops->mode);
Thomas Gleixner8593fbc2006-05-29 03:26:58 +0200937}
938
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100939#ifdef CONFIG_MTD_ONENAND_VERIFY_WRITE
940/**
Kyungmin Park8e6ec692006-05-12 17:02:41 +0300941 * onenand_verify_oob - [GENERIC] verify the oob contents after a write
942 * @param mtd MTD device structure
943 * @param buf the databuffer to verify
944 * @param to offset to read from
Kyungmin Park8e6ec692006-05-12 17:02:41 +0300945 *
946 */
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200947static int onenand_verify_oob(struct mtd_info *mtd, const u_char *buf, loff_t to)
Kyungmin Park8e6ec692006-05-12 17:02:41 +0300948{
949 struct onenand_chip *this = mtd->priv;
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200950 char *readp = this->page_buf + mtd->writesize;
Kyungmin Park8e6ec692006-05-12 17:02:41 +0300951 int status, i;
952
953 this->command(mtd, ONENAND_CMD_READOOB, to, mtd->oobsize);
954 onenand_update_bufferram(mtd, to, 0);
955 status = this->wait(mtd, FL_READING);
956 if (status)
957 return status;
958
Adrian Huntera5e7c7b2007-01-31 17:19:28 +0200959 this->read_bufferram(mtd, ONENAND_SPARERAM, readp, 0, mtd->oobsize);
960 for(i = 0; i < mtd->oobsize; i++)
Kyungmin Park8e6ec692006-05-12 17:02:41 +0300961 if (buf[i] != 0xFF && buf[i] != readp[i])
962 return -EBADMSG;
963
964 return 0;
965}
966
967/**
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900968 * onenand_verify - [GENERIC] verify the chip contents after a write
969 * @param mtd MTD device structure
970 * @param buf the databuffer to verify
971 * @param addr offset to read from
972 * @param len number of bytes to read and compare
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100973 *
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100974 */
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900975static int onenand_verify(struct mtd_info *mtd, const u_char *buf, loff_t addr, size_t len)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100976{
977 struct onenand_chip *this = mtd->priv;
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900978 void __iomem *dataram;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100979 int ret = 0;
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900980 int thislen, column;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100981
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900982 while (len != 0) {
983 thislen = min_t(int, mtd->writesize, len);
984 column = addr & (mtd->writesize - 1);
985 if (column + thislen > mtd->writesize)
986 thislen = mtd->writesize - column;
Kyungmin Park60d84f92006-12-22 16:21:54 +0900987
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900988 this->command(mtd, ONENAND_CMD_READ, addr, mtd->writesize);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100989
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900990 onenand_update_bufferram(mtd, addr, 0);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100991
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900992 ret = this->wait(mtd, FL_READING);
993 if (ret)
994 return ret;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100995
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900996 onenand_update_bufferram(mtd, addr, 1);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +0100997
Adrian Hunter8b29c0b2007-01-25 14:06:33 +0900998 dataram = this->base + ONENAND_DATARAM;
999 dataram += onenand_bufferram_offset(mtd, ONENAND_DATARAM);
1000
1001 if (memcmp(buf, dataram + column, thislen))
1002 return -EBADMSG;
1003
1004 len -= thislen;
1005 buf += thislen;
1006 addr += thislen;
1007 }
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +00001008
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001009 return 0;
1010}
1011#else
Adrian Hunter8b29c0b2007-01-25 14:06:33 +09001012#define onenand_verify(...) (0)
Kyungmin Park8e6ec692006-05-12 17:02:41 +03001013#define onenand_verify_oob(...) (0)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001014#endif
1015
Kyungmin Park60d84f92006-12-22 16:21:54 +09001016#define NOTALIGNED(x) ((x & (this->subpagesize - 1)) != 0)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001017
1018/**
Thomas Gleixner9223a452006-05-23 17:21:03 +02001019 * onenand_write - [MTD Interface] write buffer to FLASH
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001020 * @param mtd MTD device structure
1021 * @param to offset to write to
1022 * @param len number of bytes to write
1023 * @param retlen pointer to variable to store the number of written bytes
1024 * @param buf the data to write
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001025 *
Thomas Gleixner9223a452006-05-23 17:21:03 +02001026 * Write with ECC
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001027 */
Thomas Gleixner9223a452006-05-23 17:21:03 +02001028static int onenand_write(struct mtd_info *mtd, loff_t to, size_t len,
1029 size_t *retlen, const u_char *buf)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001030{
1031 struct onenand_chip *this = mtd->priv;
1032 int written = 0;
1033 int ret = 0;
Kyungmin Park60d84f92006-12-22 16:21:54 +09001034 int column, subpage;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001035
Thomas Gleixner9223a452006-05-23 17:21:03 +02001036 DEBUG(MTD_DEBUG_LEVEL3, "onenand_write: to = 0x%08x, len = %i\n", (unsigned int) to, (int) len);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001037
1038 /* Initialize retlen, in case of early exit */
1039 *retlen = 0;
1040
1041 /* Do not allow writes past end of device */
1042 if (unlikely((to + len) > mtd->size)) {
Thomas Gleixner9223a452006-05-23 17:21:03 +02001043 DEBUG(MTD_DEBUG_LEVEL0, "onenand_write: Attempt write to past end of device\n");
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001044 return -EINVAL;
1045 }
1046
1047 /* Reject writes, which are not page aligned */
1048 if (unlikely(NOTALIGNED(to)) || unlikely(NOTALIGNED(len))) {
Thomas Gleixner9223a452006-05-23 17:21:03 +02001049 DEBUG(MTD_DEBUG_LEVEL0, "onenand_write: Attempt to write not page aligned data\n");
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001050 return -EINVAL;
1051 }
1052
Kyungmin Park60d84f92006-12-22 16:21:54 +09001053 column = to & (mtd->writesize - 1);
1054 subpage = column || (len & (mtd->writesize - 1));
1055
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001056 /* Grab the lock and see if the device is available */
1057 onenand_get_device(mtd, FL_WRITING);
1058
1059 /* Loop until all data write */
1060 while (written < len) {
Kyungmin Park60d84f92006-12-22 16:21:54 +09001061 int bytes = mtd->writesize;
1062 int thislen = min_t(int, bytes, len - written);
1063 u_char *wbuf = (u_char *) buf;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001064
Artem Bityutskiy61a7e192006-12-26 16:41:24 +09001065 cond_resched();
1066
Kyungmin Park60d84f92006-12-22 16:21:54 +09001067 this->command(mtd, ONENAND_CMD_BUFFERRAM, to, bytes);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001068
Kyungmin Park60d84f92006-12-22 16:21:54 +09001069 /* Partial page write */
1070 if (subpage) {
1071 bytes = min_t(int, bytes - column, (int) len);
1072 memset(this->page_buf, 0xff, mtd->writesize);
1073 memcpy(this->page_buf + column, buf, bytes);
1074 wbuf = this->page_buf;
1075 /* Even though partial write, we need page size */
1076 thislen = mtd->writesize;
1077 }
1078
1079 this->write_bufferram(mtd, ONENAND_DATARAM, wbuf, 0, thislen);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001080 this->write_bufferram(mtd, ONENAND_SPARERAM, ffchars, 0, mtd->oobsize);
1081
Joern Engel28318772006-05-22 23:18:05 +02001082 this->command(mtd, ONENAND_CMD_PROG, to, mtd->writesize);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001083
Kyungmin Park60d84f92006-12-22 16:21:54 +09001084 /* In partial page write we don't update bufferram */
1085 onenand_update_bufferram(mtd, to, !subpage);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001086
1087 ret = this->wait(mtd, FL_WRITING);
1088 if (ret) {
Thomas Gleixner9223a452006-05-23 17:21:03 +02001089 DEBUG(MTD_DEBUG_LEVEL0, "onenand_write: write filaed %d\n", ret);
Kyungmin Park60d84f92006-12-22 16:21:54 +09001090 break;
1091 }
1092
1093 /* Only check verify write turn on */
Adrian Hunter8b29c0b2007-01-25 14:06:33 +09001094 ret = onenand_verify(mtd, (u_char *) wbuf, to, thislen);
Kyungmin Park60d84f92006-12-22 16:21:54 +09001095 if (ret) {
1096 DEBUG(MTD_DEBUG_LEVEL0, "onenand_write: verify failed %d\n", ret);
1097 break;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001098 }
1099
1100 written += thislen;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001101 if (written == len)
1102 break;
1103
Kyungmin Park60d84f92006-12-22 16:21:54 +09001104 column = 0;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001105 to += thislen;
1106 buf += thislen;
1107 }
1108
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001109 /* Deselect and wake up anyone waiting on the device */
1110 onenand_release_device(mtd);
1111
1112 *retlen = written;
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +00001113
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001114 return ret;
1115}
1116
1117/**
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001118 * onenand_fill_auto_oob - [Internal] oob auto-placement transfer
1119 * @param mtd MTD device structure
1120 * @param oob_buf oob buffer
1121 * @param buf source address
1122 * @param column oob offset to write to
1123 * @param thislen oob length to write
1124 */
1125static int onenand_fill_auto_oob(struct mtd_info *mtd, u_char *oob_buf,
1126 const u_char *buf, int column, int thislen)
1127{
1128 struct onenand_chip *this = mtd->priv;
1129 struct nand_oobfree *free;
1130 int writecol = column;
1131 int writeend = column + thislen;
1132 int lastgap = 0;
1133
1134 for (free = this->ecclayout->oobfree; free->length; ++free) {
1135 if (writecol >= lastgap)
1136 writecol += free->offset - lastgap;
1137 if (writeend >= lastgap)
1138 writeend += free->offset - lastgap;
1139 lastgap = free->offset + free->length;
1140 }
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001141 for (free = this->ecclayout->oobfree; free->length; ++free) {
1142 int free_end = free->offset + free->length;
1143 if (free->offset < writeend && free_end > writecol) {
1144 int st = max_t(int,free->offset,writecol);
1145 int ed = min_t(int,free_end,writeend);
1146 int n = ed - st;
1147 memcpy(oob_buf + st, buf, n);
1148 buf += n;
1149 }
1150 }
1151 return 0;
1152}
1153
1154/**
Thomas Gleixner8593fbc2006-05-29 03:26:58 +02001155 * onenand_do_write_oob - [Internal] OneNAND write out-of-band
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001156 * @param mtd MTD device structure
1157 * @param to offset to write to
1158 * @param len number of bytes to write
1159 * @param retlen pointer to variable to store the number of written bytes
1160 * @param buf the data to write
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001161 * @param mode operation mode
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001162 *
1163 * OneNAND write out-of-band
1164 */
Thomas Gleixner8593fbc2006-05-29 03:26:58 +02001165static int onenand_do_write_oob(struct mtd_info *mtd, loff_t to, size_t len,
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001166 size_t *retlen, const u_char *buf, mtd_oob_mode_t mode)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001167{
1168 struct onenand_chip *this = mtd->priv;
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001169 int column, ret = 0, oobsize;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001170 int written = 0;
1171
1172 DEBUG(MTD_DEBUG_LEVEL3, "onenand_write_oob: to = 0x%08x, len = %i\n", (unsigned int) to, (int) len);
1173
1174 /* Initialize retlen, in case of early exit */
1175 *retlen = 0;
1176
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001177 if (mode == MTD_OOB_AUTO)
1178 oobsize = this->ecclayout->oobavail;
1179 else
1180 oobsize = mtd->oobsize;
1181
1182 column = to & (mtd->oobsize - 1);
1183
1184 if (unlikely(column >= oobsize)) {
1185 DEBUG(MTD_DEBUG_LEVEL0, "onenand_write_oob: Attempted to start write outside oob\n");
1186 return -EINVAL;
1187 }
1188
1189 /* Do not allow reads past end of device */
1190 if (unlikely(to >= mtd->size ||
1191 column + len > ((mtd->size >> this->page_shift) -
1192 (to >> this->page_shift)) * oobsize)) {
1193 DEBUG(MTD_DEBUG_LEVEL0, "onenand_write_oob: Attempted to write past end of device\n");
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001194 return -EINVAL;
1195 }
1196
1197 /* Grab the lock and see if the device is available */
1198 onenand_get_device(mtd, FL_WRITING);
1199
1200 /* Loop until all data write */
1201 while (written < len) {
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001202 int thislen = min_t(int, oobsize, len - written);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001203
Artem Bityutskiy61a7e192006-12-26 16:41:24 +09001204 cond_resched();
1205
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001206 this->command(mtd, ONENAND_CMD_BUFFERRAM, to, mtd->oobsize);
1207
Kyungmin Park34c10602006-05-12 17:02:46 +03001208 /* We send data to spare ram with oobsize
1209 * to prevent byte access */
1210 memset(this->page_buf, 0xff, mtd->oobsize);
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001211 if (mode == MTD_OOB_AUTO)
1212 onenand_fill_auto_oob(mtd, this->page_buf, buf, column, thislen);
1213 else
1214 memcpy(this->page_buf + column, buf, thislen);
Kyungmin Park34c10602006-05-12 17:02:46 +03001215 this->write_bufferram(mtd, ONENAND_SPARERAM, this->page_buf, 0, mtd->oobsize);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001216
1217 this->command(mtd, ONENAND_CMD_PROGOOB, to, mtd->oobsize);
1218
1219 onenand_update_bufferram(mtd, to, 0);
1220
Kyungmin Park8e6ec692006-05-12 17:02:41 +03001221 ret = this->wait(mtd, FL_WRITING);
1222 if (ret) {
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001223 DEBUG(MTD_DEBUG_LEVEL0, "onenand_write_oob: write failed %d\n", ret);
Kyungmin Park5b4246f2007-02-02 09:39:21 +09001224 break;
Kyungmin Park8e6ec692006-05-12 17:02:41 +03001225 }
1226
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001227 ret = onenand_verify_oob(mtd, this->page_buf, to);
Kyungmin Park8e6ec692006-05-12 17:02:41 +03001228 if (ret) {
1229 DEBUG(MTD_DEBUG_LEVEL0, "onenand_write_oob: verify failed %d\n", ret);
Kyungmin Park5b4246f2007-02-02 09:39:21 +09001230 break;
Kyungmin Park8e6ec692006-05-12 17:02:41 +03001231 }
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001232
1233 written += thislen;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001234 if (written == len)
1235 break;
1236
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001237 to += mtd->writesize;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001238 buf += thislen;
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001239 column = 0;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001240 }
1241
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001242 /* Deselect and wake up anyone waiting on the device */
1243 onenand_release_device(mtd);
1244
1245 *retlen = written;
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +00001246
Kyungmin Park8e6ec692006-05-12 17:02:41 +03001247 return ret;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001248}
1249
1250/**
Thomas Gleixner8593fbc2006-05-29 03:26:58 +02001251 * onenand_write_oob - [MTD Interface] NAND write data and/or out-of-band
1252 * @mtd: MTD device structure
1253 * @from: offset to read from
1254 * @ops: oob operation description structure
1255 */
1256static int onenand_write_oob(struct mtd_info *mtd, loff_t to,
1257 struct mtd_oob_ops *ops)
1258{
Kyungmin Park4f4fad22007-02-02 09:22:21 +09001259 switch (ops->mode) {
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001260 case MTD_OOB_PLACE:
1261 case MTD_OOB_AUTO:
1262 break;
1263 case MTD_OOB_RAW:
Kyungmin Park4f4fad22007-02-02 09:22:21 +09001264 /* Not implemented yet */
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001265 default:
1266 return -EINVAL;
1267 }
Kyungmin Park66a1e422006-12-11 01:34:23 +00001268 return onenand_do_write_oob(mtd, to + ops->ooboffs, ops->ooblen,
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001269 &ops->oobretlen, ops->oobbuf, ops->mode);
Thomas Gleixner8593fbc2006-05-29 03:26:58 +02001270}
1271
1272/**
Kyungmin Parkcdc00132005-09-03 07:15:48 +01001273 * onenand_block_checkbad - [GENERIC] Check if a block is marked bad
1274 * @param mtd MTD device structure
1275 * @param ofs offset from device start
1276 * @param getchip 0, if the chip is already selected
1277 * @param allowbbt 1, if its allowed to access the bbt area
1278 *
1279 * Check, if the block is bad. Either by reading the bad block table or
1280 * calling of the scan function.
1281 */
1282static int onenand_block_checkbad(struct mtd_info *mtd, loff_t ofs, int getchip, int allowbbt)
1283{
1284 struct onenand_chip *this = mtd->priv;
1285 struct bbm_info *bbm = this->bbm;
1286
1287 /* Return info from the table */
1288 return bbm->isbad_bbt(mtd, ofs, allowbbt);
1289}
1290
1291/**
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001292 * onenand_erase - [MTD Interface] erase block(s)
1293 * @param mtd MTD device structure
1294 * @param instr erase instruction
1295 *
1296 * Erase one ore more blocks
1297 */
1298static int onenand_erase(struct mtd_info *mtd, struct erase_info *instr)
1299{
1300 struct onenand_chip *this = mtd->priv;
1301 unsigned int block_size;
1302 loff_t addr;
1303 int len;
1304 int ret = 0;
1305
1306 DEBUG(MTD_DEBUG_LEVEL3, "onenand_erase: start = 0x%08x, len = %i\n", (unsigned int) instr->addr, (unsigned int) instr->len);
1307
1308 block_size = (1 << this->erase_shift);
1309
1310 /* Start address must align on block boundary */
1311 if (unlikely(instr->addr & (block_size - 1))) {
1312 DEBUG(MTD_DEBUG_LEVEL0, "onenand_erase: Unaligned address\n");
1313 return -EINVAL;
1314 }
1315
1316 /* Length must align on block boundary */
1317 if (unlikely(instr->len & (block_size - 1))) {
1318 DEBUG(MTD_DEBUG_LEVEL0, "onenand_erase: Length not block aligned\n");
1319 return -EINVAL;
1320 }
1321
1322 /* Do not allow erase past end of device */
1323 if (unlikely((instr->len + instr->addr) > mtd->size)) {
1324 DEBUG(MTD_DEBUG_LEVEL0, "onenand_erase: Erase past end of device\n");
1325 return -EINVAL;
1326 }
1327
1328 instr->fail_addr = 0xffffffff;
1329
1330 /* Grab the lock and see if the device is available */
1331 onenand_get_device(mtd, FL_ERASING);
1332
1333 /* Loop throught the pages */
1334 len = instr->len;
1335 addr = instr->addr;
1336
1337 instr->state = MTD_ERASING;
1338
1339 while (len) {
Artem Bityutskiy61a7e192006-12-26 16:41:24 +09001340 cond_resched();
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001341
Kyungmin Parkcdc00132005-09-03 07:15:48 +01001342 /* Check if we have a bad block, we do not erase bad blocks */
1343 if (onenand_block_checkbad(mtd, addr, 0, 0)) {
1344 printk (KERN_WARNING "onenand_erase: attempt to erase a bad block at addr 0x%08x\n", (unsigned int) addr);
1345 instr->state = MTD_ERASE_FAILED;
1346 goto erase_exit;
1347 }
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001348
1349 this->command(mtd, ONENAND_CMD_ERASE, addr, block_size);
1350
1351 ret = this->wait(mtd, FL_ERASING);
1352 /* Check, if it is write protected */
1353 if (ret) {
Kyungmin Parkf6272482006-12-22 16:02:50 +09001354 DEBUG(MTD_DEBUG_LEVEL0, "onenand_erase: Failed erase, block %d\n", (unsigned) (addr >> this->erase_shift));
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001355 instr->state = MTD_ERASE_FAILED;
1356 instr->fail_addr = addr;
1357 goto erase_exit;
1358 }
1359
1360 len -= block_size;
1361 addr += block_size;
1362 }
1363
1364 instr->state = MTD_ERASE_DONE;
1365
1366erase_exit:
1367
1368 ret = instr->state == MTD_ERASE_DONE ? 0 : -EIO;
1369 /* Do call back function */
1370 if (!ret)
1371 mtd_erase_callback(instr);
1372
1373 /* Deselect and wake up anyone waiting on the device */
1374 onenand_release_device(mtd);
1375
1376 return ret;
1377}
1378
1379/**
1380 * onenand_sync - [MTD Interface] sync
1381 * @param mtd MTD device structure
1382 *
1383 * Sync is actually a wait for chip ready function
1384 */
1385static void onenand_sync(struct mtd_info *mtd)
1386{
1387 DEBUG(MTD_DEBUG_LEVEL3, "onenand_sync: called\n");
1388
1389 /* Grab the lock and see if the device is available */
1390 onenand_get_device(mtd, FL_SYNCING);
1391
1392 /* Release it and go back */
1393 onenand_release_device(mtd);
1394}
1395
1396/**
1397 * onenand_block_isbad - [MTD Interface] Check whether the block at the given offset is bad
1398 * @param mtd MTD device structure
1399 * @param ofs offset relative to mtd start
Kyungmin Parkcdc00132005-09-03 07:15:48 +01001400 *
1401 * Check whether the block is bad
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001402 */
1403static int onenand_block_isbad(struct mtd_info *mtd, loff_t ofs)
1404{
Kyungmin Parkcdc00132005-09-03 07:15:48 +01001405 /* Check for invalid offset */
1406 if (ofs > mtd->size)
1407 return -EINVAL;
1408
1409 return onenand_block_checkbad(mtd, ofs, 1, 0);
1410}
1411
1412/**
1413 * onenand_default_block_markbad - [DEFAULT] mark a block bad
1414 * @param mtd MTD device structure
1415 * @param ofs offset from device start
1416 *
1417 * This is the default implementation, which can be overridden by
1418 * a hardware specific driver.
1419 */
1420static int onenand_default_block_markbad(struct mtd_info *mtd, loff_t ofs)
1421{
1422 struct onenand_chip *this = mtd->priv;
1423 struct bbm_info *bbm = this->bbm;
1424 u_char buf[2] = {0, 0};
1425 size_t retlen;
1426 int block;
1427
1428 /* Get block number */
1429 block = ((int) ofs) >> bbm->bbt_erase_shift;
1430 if (bbm->bbt)
1431 bbm->bbt[block >> 2] |= 0x01 << ((block & 0x03) << 1);
1432
1433 /* We write two bytes, so we dont have to mess with 16 bit access */
1434 ofs += mtd->oobsize + (bbm->badblockpos & ~0x01);
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001435 return onenand_do_write_oob(mtd, ofs , 2, &retlen, buf, MTD_OOB_PLACE);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001436}
1437
1438/**
1439 * onenand_block_markbad - [MTD Interface] Mark the block at the given offset as bad
1440 * @param mtd MTD device structure
1441 * @param ofs offset relative to mtd start
Kyungmin Parkcdc00132005-09-03 07:15:48 +01001442 *
1443 * Mark the block as bad
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001444 */
1445static int onenand_block_markbad(struct mtd_info *mtd, loff_t ofs)
1446{
Kyungmin Parkcdc00132005-09-03 07:15:48 +01001447 struct onenand_chip *this = mtd->priv;
1448 int ret;
1449
1450 ret = onenand_block_isbad(mtd, ofs);
1451 if (ret) {
1452 /* If it was bad already, return success and do nothing */
1453 if (ret > 0)
1454 return 0;
1455 return ret;
1456 }
1457
1458 return this->block_markbad(mtd, ofs);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001459}
1460
1461/**
Kyungmin Park08f782b2006-11-16 11:29:39 +09001462 * onenand_do_lock_cmd - [OneNAND Interface] Lock or unlock block(s)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001463 * @param mtd MTD device structure
1464 * @param ofs offset relative to mtd start
Kyungmin Park08f782b2006-11-16 11:29:39 +09001465 * @param len number of bytes to lock or unlock
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001466 *
Kyungmin Park08f782b2006-11-16 11:29:39 +09001467 * Lock or unlock one or more blocks
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001468 */
Kyungmin Park08f782b2006-11-16 11:29:39 +09001469static int onenand_do_lock_cmd(struct mtd_info *mtd, loff_t ofs, size_t len, int cmd)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001470{
1471 struct onenand_chip *this = mtd->priv;
1472 int start, end, block, value, status;
Kyungmin Park08f782b2006-11-16 11:29:39 +09001473 int wp_status_mask;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001474
1475 start = ofs >> this->erase_shift;
1476 end = len >> this->erase_shift;
1477
Kyungmin Park08f782b2006-11-16 11:29:39 +09001478 if (cmd == ONENAND_CMD_LOCK)
1479 wp_status_mask = ONENAND_WP_LS;
1480 else
1481 wp_status_mask = ONENAND_WP_US;
1482
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001483 /* Continuous lock scheme */
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001484 if (this->options & ONENAND_HAS_CONT_LOCK) {
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001485 /* Set start block address */
1486 this->write_word(start, this->base + ONENAND_REG_START_BLOCK_ADDRESS);
1487 /* Set end block address */
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001488 this->write_word(start + end - 1, this->base + ONENAND_REG_END_BLOCK_ADDRESS);
Kyungmin Park08f782b2006-11-16 11:29:39 +09001489 /* Write lock command */
1490 this->command(mtd, cmd, 0, 0);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001491
1492 /* There's no return value */
Kyungmin Park08f782b2006-11-16 11:29:39 +09001493 this->wait(mtd, FL_LOCKING);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001494
1495 /* Sanity check */
1496 while (this->read_word(this->base + ONENAND_REG_CTRL_STATUS)
1497 & ONENAND_CTRL_ONGO)
1498 continue;
1499
1500 /* Check lock status */
1501 status = this->read_word(this->base + ONENAND_REG_WP_STATUS);
Kyungmin Park08f782b2006-11-16 11:29:39 +09001502 if (!(status & wp_status_mask))
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001503 printk(KERN_ERR "wp status = 0x%x\n", status);
1504
1505 return 0;
1506 }
1507
1508 /* Block lock scheme */
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001509 for (block = start; block < start + end; block++) {
Kyungmin Park20ba89a2005-12-16 11:17:29 +09001510 /* Set block address */
1511 value = onenand_block_address(this, block);
1512 this->write_word(value, this->base + ONENAND_REG_START_ADDRESS1);
1513 /* Select DataRAM for DDP */
1514 value = onenand_bufferram_address(this, block);
1515 this->write_word(value, this->base + ONENAND_REG_START_ADDRESS2);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001516 /* Set start block address */
1517 this->write_word(block, this->base + ONENAND_REG_START_BLOCK_ADDRESS);
Kyungmin Park08f782b2006-11-16 11:29:39 +09001518 /* Write lock command */
1519 this->command(mtd, cmd, 0, 0);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001520
1521 /* There's no return value */
Kyungmin Park08f782b2006-11-16 11:29:39 +09001522 this->wait(mtd, FL_LOCKING);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001523
1524 /* Sanity check */
1525 while (this->read_word(this->base + ONENAND_REG_CTRL_STATUS)
1526 & ONENAND_CTRL_ONGO)
1527 continue;
1528
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001529 /* Check lock status */
1530 status = this->read_word(this->base + ONENAND_REG_WP_STATUS);
Kyungmin Park08f782b2006-11-16 11:29:39 +09001531 if (!(status & wp_status_mask))
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001532 printk(KERN_ERR "block = %d, wp status = 0x%x\n", block, status);
1533 }
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +00001534
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001535 return 0;
1536}
1537
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001538/**
Kyungmin Park08f782b2006-11-16 11:29:39 +09001539 * onenand_lock - [MTD Interface] Lock block(s)
1540 * @param mtd MTD device structure
1541 * @param ofs offset relative to mtd start
1542 * @param len number of bytes to unlock
1543 *
1544 * Lock one or more blocks
1545 */
1546static int onenand_lock(struct mtd_info *mtd, loff_t ofs, size_t len)
1547{
1548 return onenand_do_lock_cmd(mtd, ofs, len, ONENAND_CMD_LOCK);
1549}
1550
Kyungmin Park08f782b2006-11-16 11:29:39 +09001551/**
1552 * onenand_unlock - [MTD Interface] Unlock block(s)
1553 * @param mtd MTD device structure
1554 * @param ofs offset relative to mtd start
1555 * @param len number of bytes to unlock
1556 *
1557 * Unlock one or more blocks
1558 */
1559static int onenand_unlock(struct mtd_info *mtd, loff_t ofs, size_t len)
1560{
1561 return onenand_do_lock_cmd(mtd, ofs, len, ONENAND_CMD_UNLOCK);
1562}
1563
1564/**
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001565 * onenand_check_lock_status - [OneNAND Interface] Check lock status
1566 * @param this onenand chip data structure
1567 *
1568 * Check lock status
1569 */
1570static void onenand_check_lock_status(struct onenand_chip *this)
1571{
1572 unsigned int value, block, status;
1573 unsigned int end;
1574
1575 end = this->chipsize >> this->erase_shift;
1576 for (block = 0; block < end; block++) {
1577 /* Set block address */
1578 value = onenand_block_address(this, block);
1579 this->write_word(value, this->base + ONENAND_REG_START_ADDRESS1);
1580 /* Select DataRAM for DDP */
1581 value = onenand_bufferram_address(this, block);
1582 this->write_word(value, this->base + ONENAND_REG_START_ADDRESS2);
1583 /* Set start block address */
1584 this->write_word(block, this->base + ONENAND_REG_START_BLOCK_ADDRESS);
1585
1586 /* Check lock status */
1587 status = this->read_word(this->base + ONENAND_REG_WP_STATUS);
1588 if (!(status & ONENAND_WP_US))
1589 printk(KERN_ERR "block = %d, wp status = 0x%x\n", block, status);
1590 }
1591}
1592
1593/**
1594 * onenand_unlock_all - [OneNAND Interface] unlock all blocks
1595 * @param mtd MTD device structure
1596 *
1597 * Unlock all blocks
1598 */
1599static int onenand_unlock_all(struct mtd_info *mtd)
1600{
1601 struct onenand_chip *this = mtd->priv;
1602
1603 if (this->options & ONENAND_HAS_UNLOCK_ALL) {
Kyungmin Park10b7a2b2007-01-12 05:45:34 +09001604 /* Set start block address */
1605 this->write_word(0, this->base + ONENAND_REG_START_BLOCK_ADDRESS);
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001606 /* Write unlock command */
1607 this->command(mtd, ONENAND_CMD_UNLOCK_ALL, 0, 0);
1608
1609 /* There's no return value */
Kyungmin Park08f782b2006-11-16 11:29:39 +09001610 this->wait(mtd, FL_LOCKING);
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001611
1612 /* Sanity check */
1613 while (this->read_word(this->base + ONENAND_REG_CTRL_STATUS)
1614 & ONENAND_CTRL_ONGO)
1615 continue;
1616
1617 /* Workaround for all block unlock in DDP */
Kyungmin Park738d61f2007-01-15 17:09:14 +09001618 if (ONENAND_IS_DDP(this)) {
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001619 /* 1st block on another chip */
Kyungmin Park10b7a2b2007-01-12 05:45:34 +09001620 loff_t ofs = this->chipsize >> 1;
1621 size_t len = mtd->erasesize;
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001622
1623 onenand_unlock(mtd, ofs, len);
1624 }
1625
1626 onenand_check_lock_status(this);
1627
1628 return 0;
1629 }
1630
Kyungmin Park08f782b2006-11-16 11:29:39 +09001631 onenand_unlock(mtd, 0x0, this->chipsize);
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001632
1633 return 0;
1634}
1635
Kyungmin Park493c6462006-05-12 17:03:07 +03001636#ifdef CONFIG_MTD_ONENAND_OTP
1637
1638/* Interal OTP operation */
1639typedef int (*otp_op_t)(struct mtd_info *mtd, loff_t form, size_t len,
1640 size_t *retlen, u_char *buf);
1641
1642/**
1643 * do_otp_read - [DEFAULT] Read OTP block area
1644 * @param mtd MTD device structure
1645 * @param from The offset to read
1646 * @param len number of bytes to read
1647 * @param retlen pointer to variable to store the number of readbytes
1648 * @param buf the databuffer to put/get data
1649 *
1650 * Read OTP block area.
1651 */
1652static int do_otp_read(struct mtd_info *mtd, loff_t from, size_t len,
1653 size_t *retlen, u_char *buf)
1654{
1655 struct onenand_chip *this = mtd->priv;
1656 int ret;
1657
1658 /* Enter OTP access mode */
1659 this->command(mtd, ONENAND_CMD_OTP_ACCESS, 0, 0);
1660 this->wait(mtd, FL_OTPING);
1661
1662 ret = mtd->read(mtd, from, len, retlen, buf);
1663
1664 /* Exit OTP access mode */
1665 this->command(mtd, ONENAND_CMD_RESET, 0, 0);
1666 this->wait(mtd, FL_RESETING);
1667
1668 return ret;
1669}
1670
1671/**
1672 * do_otp_write - [DEFAULT] Write OTP block area
1673 * @param mtd MTD device structure
1674 * @param from The offset to write
1675 * @param len number of bytes to write
1676 * @param retlen pointer to variable to store the number of write bytes
1677 * @param buf the databuffer to put/get data
1678 *
1679 * Write OTP block area.
1680 */
1681static int do_otp_write(struct mtd_info *mtd, loff_t from, size_t len,
1682 size_t *retlen, u_char *buf)
1683{
1684 struct onenand_chip *this = mtd->priv;
1685 unsigned char *pbuf = buf;
1686 int ret;
1687
1688 /* Force buffer page aligned */
Joern Engel28318772006-05-22 23:18:05 +02001689 if (len < mtd->writesize) {
Kyungmin Park493c6462006-05-12 17:03:07 +03001690 memcpy(this->page_buf, buf, len);
Joern Engel28318772006-05-22 23:18:05 +02001691 memset(this->page_buf + len, 0xff, mtd->writesize - len);
Kyungmin Park493c6462006-05-12 17:03:07 +03001692 pbuf = this->page_buf;
Joern Engel28318772006-05-22 23:18:05 +02001693 len = mtd->writesize;
Kyungmin Park493c6462006-05-12 17:03:07 +03001694 }
1695
1696 /* Enter OTP access mode */
1697 this->command(mtd, ONENAND_CMD_OTP_ACCESS, 0, 0);
1698 this->wait(mtd, FL_OTPING);
1699
1700 ret = mtd->write(mtd, from, len, retlen, pbuf);
1701
1702 /* Exit OTP access mode */
1703 this->command(mtd, ONENAND_CMD_RESET, 0, 0);
1704 this->wait(mtd, FL_RESETING);
1705
1706 return ret;
1707}
1708
1709/**
1710 * do_otp_lock - [DEFAULT] Lock OTP block area
1711 * @param mtd MTD device structure
1712 * @param from The offset to lock
1713 * @param len number of bytes to lock
1714 * @param retlen pointer to variable to store the number of lock bytes
1715 * @param buf the databuffer to put/get data
1716 *
1717 * Lock OTP block area.
1718 */
1719static int do_otp_lock(struct mtd_info *mtd, loff_t from, size_t len,
1720 size_t *retlen, u_char *buf)
1721{
1722 struct onenand_chip *this = mtd->priv;
1723 int ret;
1724
1725 /* Enter OTP access mode */
1726 this->command(mtd, ONENAND_CMD_OTP_ACCESS, 0, 0);
1727 this->wait(mtd, FL_OTPING);
1728
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02001729 ret = onenand_do_write_oob(mtd, from, len, retlen, buf, MTD_OOB_PLACE);
Kyungmin Park493c6462006-05-12 17:03:07 +03001730
1731 /* Exit OTP access mode */
1732 this->command(mtd, ONENAND_CMD_RESET, 0, 0);
1733 this->wait(mtd, FL_RESETING);
1734
1735 return ret;
1736}
1737
1738/**
1739 * onenand_otp_walk - [DEFAULT] Handle OTP operation
1740 * @param mtd MTD device structure
1741 * @param from The offset to read/write
1742 * @param len number of bytes to read/write
1743 * @param retlen pointer to variable to store the number of read bytes
1744 * @param buf the databuffer to put/get data
1745 * @param action do given action
1746 * @param mode specify user and factory
1747 *
1748 * Handle OTP operation.
1749 */
1750static int onenand_otp_walk(struct mtd_info *mtd, loff_t from, size_t len,
1751 size_t *retlen, u_char *buf,
1752 otp_op_t action, int mode)
1753{
1754 struct onenand_chip *this = mtd->priv;
1755 int otp_pages;
1756 int density;
1757 int ret = 0;
1758
1759 *retlen = 0;
1760
1761 density = this->device_id >> ONENAND_DEVICE_DENSITY_SHIFT;
1762 if (density < ONENAND_DEVICE_DENSITY_512Mb)
1763 otp_pages = 20;
1764 else
1765 otp_pages = 10;
1766
1767 if (mode == MTD_OTP_FACTORY) {
Joern Engel28318772006-05-22 23:18:05 +02001768 from += mtd->writesize * otp_pages;
Kyungmin Park493c6462006-05-12 17:03:07 +03001769 otp_pages = 64 - otp_pages;
1770 }
1771
1772 /* Check User/Factory boundary */
Joern Engel28318772006-05-22 23:18:05 +02001773 if (((mtd->writesize * otp_pages) - (from + len)) < 0)
Kyungmin Park493c6462006-05-12 17:03:07 +03001774 return 0;
1775
1776 while (len > 0 && otp_pages > 0) {
1777 if (!action) { /* OTP Info functions */
1778 struct otp_info *otpinfo;
1779
1780 len -= sizeof(struct otp_info);
1781 if (len <= 0)
1782 return -ENOSPC;
1783
1784 otpinfo = (struct otp_info *) buf;
1785 otpinfo->start = from;
Joern Engel28318772006-05-22 23:18:05 +02001786 otpinfo->length = mtd->writesize;
Kyungmin Park493c6462006-05-12 17:03:07 +03001787 otpinfo->locked = 0;
1788
Joern Engel28318772006-05-22 23:18:05 +02001789 from += mtd->writesize;
Kyungmin Park493c6462006-05-12 17:03:07 +03001790 buf += sizeof(struct otp_info);
1791 *retlen += sizeof(struct otp_info);
1792 } else {
1793 size_t tmp_retlen;
1794 int size = len;
1795
1796 ret = action(mtd, from, len, &tmp_retlen, buf);
1797
1798 buf += size;
1799 len -= size;
1800 *retlen += size;
1801
1802 if (ret < 0)
1803 return ret;
1804 }
1805 otp_pages--;
1806 }
1807
1808 return 0;
1809}
1810
1811/**
1812 * onenand_get_fact_prot_info - [MTD Interface] Read factory OTP info
1813 * @param mtd MTD device structure
1814 * @param buf the databuffer to put/get data
1815 * @param len number of bytes to read
1816 *
1817 * Read factory OTP info.
1818 */
1819static int onenand_get_fact_prot_info(struct mtd_info *mtd,
1820 struct otp_info *buf, size_t len)
1821{
1822 size_t retlen;
1823 int ret;
1824
1825 ret = onenand_otp_walk(mtd, 0, len, &retlen, (u_char *) buf, NULL, MTD_OTP_FACTORY);
1826
1827 return ret ? : retlen;
1828}
1829
1830/**
1831 * onenand_read_fact_prot_reg - [MTD Interface] Read factory OTP area
1832 * @param mtd MTD device structure
1833 * @param from The offset to read
1834 * @param len number of bytes to read
1835 * @param retlen pointer to variable to store the number of read bytes
1836 * @param buf the databuffer to put/get data
1837 *
1838 * Read factory OTP area.
1839 */
1840static int onenand_read_fact_prot_reg(struct mtd_info *mtd, loff_t from,
1841 size_t len, size_t *retlen, u_char *buf)
1842{
1843 return onenand_otp_walk(mtd, from, len, retlen, buf, do_otp_read, MTD_OTP_FACTORY);
1844}
1845
1846/**
1847 * onenand_get_user_prot_info - [MTD Interface] Read user OTP info
1848 * @param mtd MTD device structure
1849 * @param buf the databuffer to put/get data
1850 * @param len number of bytes to read
1851 *
1852 * Read user OTP info.
1853 */
1854static int onenand_get_user_prot_info(struct mtd_info *mtd,
1855 struct otp_info *buf, size_t len)
1856{
1857 size_t retlen;
1858 int ret;
1859
1860 ret = onenand_otp_walk(mtd, 0, len, &retlen, (u_char *) buf, NULL, MTD_OTP_USER);
1861
1862 return ret ? : retlen;
1863}
1864
1865/**
1866 * onenand_read_user_prot_reg - [MTD Interface] Read user OTP area
1867 * @param mtd MTD device structure
1868 * @param from The offset to read
1869 * @param len number of bytes to read
1870 * @param retlen pointer to variable to store the number of read bytes
1871 * @param buf the databuffer to put/get data
1872 *
1873 * Read user OTP area.
1874 */
1875static int onenand_read_user_prot_reg(struct mtd_info *mtd, loff_t from,
1876 size_t len, size_t *retlen, u_char *buf)
1877{
1878 return onenand_otp_walk(mtd, from, len, retlen, buf, do_otp_read, MTD_OTP_USER);
1879}
1880
1881/**
1882 * onenand_write_user_prot_reg - [MTD Interface] Write user OTP area
1883 * @param mtd MTD device structure
1884 * @param from The offset to write
1885 * @param len number of bytes to write
1886 * @param retlen pointer to variable to store the number of write bytes
1887 * @param buf the databuffer to put/get data
1888 *
1889 * Write user OTP area.
1890 */
1891static int onenand_write_user_prot_reg(struct mtd_info *mtd, loff_t from,
1892 size_t len, size_t *retlen, u_char *buf)
1893{
1894 return onenand_otp_walk(mtd, from, len, retlen, buf, do_otp_write, MTD_OTP_USER);
1895}
1896
1897/**
1898 * onenand_lock_user_prot_reg - [MTD Interface] Lock user OTP area
1899 * @param mtd MTD device structure
1900 * @param from The offset to lock
1901 * @param len number of bytes to unlock
1902 *
1903 * Write lock mark on spare area in page 0 in OTP block
1904 */
1905static int onenand_lock_user_prot_reg(struct mtd_info *mtd, loff_t from,
1906 size_t len)
1907{
1908 unsigned char oob_buf[64];
1909 size_t retlen;
1910 int ret;
1911
1912 memset(oob_buf, 0xff, mtd->oobsize);
1913 /*
1914 * Note: OTP lock operation
1915 * OTP block : 0xXXFC
1916 * 1st block : 0xXXF3 (If chip support)
1917 * Both : 0xXXF0 (If chip support)
1918 */
1919 oob_buf[ONENAND_OTP_LOCK_OFFSET] = 0xFC;
1920
1921 /*
1922 * Write lock mark to 8th word of sector0 of page0 of the spare0.
1923 * We write 16 bytes spare area instead of 2 bytes.
1924 */
1925 from = 0;
1926 len = 16;
1927
1928 ret = onenand_otp_walk(mtd, from, len, &retlen, oob_buf, do_otp_lock, MTD_OTP_USER);
1929
1930 return ret ? : retlen;
1931}
1932#endif /* CONFIG_MTD_ONENAND_OTP */
1933
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001934/**
Kyungmin Park75384b02007-01-18 11:10:57 +09001935 * onenand_check_features - Check and set OneNAND features
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001936 * @param mtd MTD data structure
1937 *
Kyungmin Park75384b02007-01-18 11:10:57 +09001938 * Check and set OneNAND features
1939 * - lock scheme
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001940 */
Kyungmin Park75384b02007-01-18 11:10:57 +09001941static void onenand_check_features(struct mtd_info *mtd)
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001942{
1943 struct onenand_chip *this = mtd->priv;
1944 unsigned int density, process;
1945
1946 /* Lock scheme depends on density and process */
1947 density = this->device_id >> ONENAND_DEVICE_DENSITY_SHIFT;
1948 process = this->version_id >> ONENAND_VERSION_PROCESS_SHIFT;
1949
1950 /* Lock scheme */
1951 if (density >= ONENAND_DEVICE_DENSITY_1Gb) {
1952 /* A-Die has all block unlock */
1953 if (process) {
1954 printk(KERN_DEBUG "Chip support all block unlock\n");
1955 this->options |= ONENAND_HAS_UNLOCK_ALL;
1956 }
1957 } else {
1958 /* Some OneNAND has continues lock scheme */
1959 if (!process) {
1960 printk(KERN_DEBUG "Lock scheme is Continues Lock\n");
1961 this->options |= ONENAND_HAS_CONT_LOCK;
1962 }
1963 }
1964}
1965
1966/**
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001967 * onenand_print_device_info - Print device ID
1968 * @param device device ID
1969 *
1970 * Print device ID
1971 */
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001972static void onenand_print_device_info(int device, int version)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001973{
1974 int vcc, demuxed, ddp, density;
1975
1976 vcc = device & ONENAND_DEVICE_VCC_MASK;
1977 demuxed = device & ONENAND_DEVICE_IS_DEMUX;
1978 ddp = device & ONENAND_DEVICE_IS_DDP;
1979 density = device >> ONENAND_DEVICE_DENSITY_SHIFT;
1980 printk(KERN_INFO "%sOneNAND%s %dMB %sV 16-bit (0x%02x)\n",
1981 demuxed ? "" : "Muxed ",
1982 ddp ? "(DDP)" : "",
1983 (16 << density),
1984 vcc ? "2.65/3.3" : "1.8",
1985 device);
Kyungmin Park28b79ff2006-09-26 09:45:28 +00001986 printk(KERN_DEBUG "OneNAND version = 0x%04x\n", version);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001987}
1988
1989static const struct onenand_manufacturers onenand_manuf_ids[] = {
1990 {ONENAND_MFR_SAMSUNG, "Samsung"},
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01001991};
1992
1993/**
1994 * onenand_check_maf - Check manufacturer ID
1995 * @param manuf manufacturer ID
1996 *
1997 * Check manufacturer ID
1998 */
1999static int onenand_check_maf(int manuf)
2000{
Kyungmin Park37b1cc32005-12-16 11:17:29 +09002001 int size = ARRAY_SIZE(onenand_manuf_ids);
2002 char *name;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002003 int i;
2004
Kyungmin Park37b1cc32005-12-16 11:17:29 +09002005 for (i = 0; i < size; i++)
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002006 if (manuf == onenand_manuf_ids[i].id)
2007 break;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002008
Kyungmin Park37b1cc32005-12-16 11:17:29 +09002009 if (i < size)
2010 name = onenand_manuf_ids[i].name;
2011 else
2012 name = "Unknown";
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002013
Kyungmin Park37b1cc32005-12-16 11:17:29 +09002014 printk(KERN_DEBUG "OneNAND Manufacturer: %s (0x%0x)\n", name, manuf);
2015
2016 return (i == size);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002017}
2018
2019/**
2020 * onenand_probe - [OneNAND Interface] Probe the OneNAND device
2021 * @param mtd MTD device structure
2022 *
2023 * OneNAND detection method:
2024 * Compare the the values from command with ones from register
2025 */
2026static int onenand_probe(struct mtd_info *mtd)
2027{
2028 struct onenand_chip *this = mtd->priv;
Kyungmin Park28b79ff2006-09-26 09:45:28 +00002029 int bram_maf_id, bram_dev_id, maf_id, dev_id, ver_id;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002030 int density;
Kyungmin Park47e777e2006-09-25 23:53:28 +00002031 int syscfg;
2032
2033 /* Save system configuration 1 */
2034 syscfg = this->read_word(this->base + ONENAND_REG_SYS_CFG1);
2035 /* Clear Sync. Burst Read mode to read BootRAM */
2036 this->write_word((syscfg & ~ONENAND_SYS_CFG1_SYNC_READ), this->base + ONENAND_REG_SYS_CFG1);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002037
2038 /* Send the command for reading device ID from BootRAM */
2039 this->write_word(ONENAND_CMD_READID, this->base + ONENAND_BOOTRAM);
2040
2041 /* Read manufacturer and device IDs from BootRAM */
2042 bram_maf_id = this->read_word(this->base + ONENAND_BOOTRAM + 0x0);
2043 bram_dev_id = this->read_word(this->base + ONENAND_BOOTRAM + 0x2);
2044
Kyungmin Park47e777e2006-09-25 23:53:28 +00002045 /* Reset OneNAND to read default register values */
2046 this->write_word(ONENAND_CMD_RESET, this->base + ONENAND_BOOTRAM);
2047 /* Wait reset */
2048 this->wait(mtd, FL_RESETING);
2049
2050 /* Restore system configuration 1 */
2051 this->write_word(syscfg, this->base + ONENAND_REG_SYS_CFG1);
2052
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002053 /* Check manufacturer ID */
2054 if (onenand_check_maf(bram_maf_id))
2055 return -ENXIO;
2056
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002057 /* Read manufacturer and device IDs from Register */
2058 maf_id = this->read_word(this->base + ONENAND_REG_MANUFACTURER_ID);
2059 dev_id = this->read_word(this->base + ONENAND_REG_DEVICE_ID);
Kyungmin Parkf4f91ac2006-11-16 12:03:56 +09002060 ver_id = this->read_word(this->base + ONENAND_REG_VERSION_ID);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002061
2062 /* Check OneNAND device */
2063 if (maf_id != bram_maf_id || dev_id != bram_dev_id)
2064 return -ENXIO;
2065
2066 /* Flash device information */
Kyungmin Park28b79ff2006-09-26 09:45:28 +00002067 onenand_print_device_info(dev_id, ver_id);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002068 this->device_id = dev_id;
Kyungmin Park28b79ff2006-09-26 09:45:28 +00002069 this->version_id = ver_id;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002070
2071 density = dev_id >> ONENAND_DEVICE_DENSITY_SHIFT;
2072 this->chipsize = (16 << density) << 20;
Kyungmin Park83a36832005-09-29 04:53:16 +01002073 /* Set density mask. it is used for DDP */
Kyungmin Park738d61f2007-01-15 17:09:14 +09002074 if (ONENAND_IS_DDP(this))
2075 this->density_mask = (1 << (density + 6));
2076 else
2077 this->density_mask = 0;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002078
2079 /* OneNAND page size & block size */
2080 /* The data buffer size is equal to page size */
Joern Engel28318772006-05-22 23:18:05 +02002081 mtd->writesize = this->read_word(this->base + ONENAND_REG_DATA_BUFFER_SIZE);
2082 mtd->oobsize = mtd->writesize >> 5;
Kyungmin Park9bfbc9b2007-01-31 14:25:21 +09002083 /* Pages per a block are always 64 in OneNAND */
Joern Engel28318772006-05-22 23:18:05 +02002084 mtd->erasesize = mtd->writesize << 6;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002085
2086 this->erase_shift = ffs(mtd->erasesize) - 1;
Joern Engel28318772006-05-22 23:18:05 +02002087 this->page_shift = ffs(mtd->writesize) - 1;
Kyungmin Park9bfbc9b2007-01-31 14:25:21 +09002088 this->page_mask = (1 << (this->erase_shift - this->page_shift)) - 1;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002089
2090 /* REVIST: Multichip handling */
2091
2092 mtd->size = this->chipsize;
2093
Kyungmin Park75384b02007-01-18 11:10:57 +09002094 /* Check OneNAND features */
2095 onenand_check_features(mtd);
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +00002096
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002097 return 0;
2098}
2099
Kyungmin Parka41371e2005-09-29 03:55:31 +01002100/**
2101 * onenand_suspend - [MTD Interface] Suspend the OneNAND flash
2102 * @param mtd MTD device structure
2103 */
2104static int onenand_suspend(struct mtd_info *mtd)
2105{
2106 return onenand_get_device(mtd, FL_PM_SUSPENDED);
2107}
2108
2109/**
2110 * onenand_resume - [MTD Interface] Resume the OneNAND flash
2111 * @param mtd MTD device structure
2112 */
2113static void onenand_resume(struct mtd_info *mtd)
2114{
2115 struct onenand_chip *this = mtd->priv;
2116
2117 if (this->state == FL_PM_SUSPENDED)
2118 onenand_release_device(mtd);
2119 else
2120 printk(KERN_ERR "resume() called for the chip which is not"
2121 "in suspended state\n");
2122}
2123
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002124/**
2125 * onenand_scan - [OneNAND Interface] Scan for the OneNAND device
2126 * @param mtd MTD device structure
2127 * @param maxchips Number of chips to scan for
2128 *
2129 * This fills out all the not initialized function pointers
2130 * with the defaults.
2131 * The flash ID is read and the mtd/chip structures are
2132 * filled with the appropriate values.
2133 */
2134int onenand_scan(struct mtd_info *mtd, int maxchips)
2135{
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02002136 int i;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002137 struct onenand_chip *this = mtd->priv;
2138
2139 if (!this->read_word)
2140 this->read_word = onenand_readw;
2141 if (!this->write_word)
2142 this->write_word = onenand_writew;
2143
2144 if (!this->command)
2145 this->command = onenand_command;
2146 if (!this->wait)
Kyungmin Park2c221202006-11-16 11:23:48 +09002147 onenand_setup_wait(mtd);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002148
2149 if (!this->read_bufferram)
2150 this->read_bufferram = onenand_read_bufferram;
2151 if (!this->write_bufferram)
2152 this->write_bufferram = onenand_write_bufferram;
2153
Kyungmin Parkcdc00132005-09-03 07:15:48 +01002154 if (!this->block_markbad)
2155 this->block_markbad = onenand_default_block_markbad;
2156 if (!this->scan_bbt)
2157 this->scan_bbt = onenand_default_bbt;
2158
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002159 if (onenand_probe(mtd))
2160 return -ENXIO;
2161
Kyungmin Park52b0eea2005-09-03 07:07:19 +01002162 /* Set Sync. Burst Read after probing */
2163 if (this->mmcontrol) {
2164 printk(KERN_INFO "OneNAND Sync. Burst Read support\n");
2165 this->read_bufferram = onenand_sync_read_bufferram;
2166 }
2167
Kyungmin Park532a37c2005-12-16 11:17:29 +09002168 /* Allocate buffers, if necessary */
2169 if (!this->page_buf) {
2170 size_t len;
Joern Engel28318772006-05-22 23:18:05 +02002171 len = mtd->writesize + mtd->oobsize;
Kyungmin Park532a37c2005-12-16 11:17:29 +09002172 this->page_buf = kmalloc(len, GFP_KERNEL);
2173 if (!this->page_buf) {
2174 printk(KERN_ERR "onenand_scan(): Can't allocate page_buf\n");
2175 return -ENOMEM;
2176 }
2177 this->options |= ONENAND_PAGEBUF_ALLOC;
2178 }
2179
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002180 this->state = FL_READY;
2181 init_waitqueue_head(&this->wq);
2182 spin_lock_init(&this->chip_lock);
2183
Kyungmin Park60d84f92006-12-22 16:21:54 +09002184 /*
2185 * Allow subpage writes up to oobsize.
2186 */
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002187 switch (mtd->oobsize) {
2188 case 64:
Thomas Gleixner5bd34c02006-05-27 22:16:10 +02002189 this->ecclayout = &onenand_oob_64;
Kyungmin Park60d84f92006-12-22 16:21:54 +09002190 mtd->subpage_sft = 2;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002191 break;
2192
2193 case 32:
Thomas Gleixner5bd34c02006-05-27 22:16:10 +02002194 this->ecclayout = &onenand_oob_32;
Kyungmin Park60d84f92006-12-22 16:21:54 +09002195 mtd->subpage_sft = 1;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002196 break;
2197
2198 default:
2199 printk(KERN_WARNING "No OOB scheme defined for oobsize %d\n",
2200 mtd->oobsize);
Kyungmin Park60d84f92006-12-22 16:21:54 +09002201 mtd->subpage_sft = 0;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002202 /* To prevent kernel oops */
Thomas Gleixner5bd34c02006-05-27 22:16:10 +02002203 this->ecclayout = &onenand_oob_32;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002204 break;
2205 }
2206
Kyungmin Park60d84f92006-12-22 16:21:54 +09002207 this->subpagesize = mtd->writesize >> mtd->subpage_sft;
Adrian Huntera5e7c7b2007-01-31 17:19:28 +02002208
2209 /*
2210 * The number of bytes available for a client to place data into
2211 * the out of band area
2212 */
2213 this->ecclayout->oobavail = 0;
2214 for (i = 0; this->ecclayout->oobfree[i].length; i++)
2215 this->ecclayout->oobavail +=
2216 this->ecclayout->oobfree[i].length;
2217
Thomas Gleixner5bd34c02006-05-27 22:16:10 +02002218 mtd->ecclayout = this->ecclayout;
Thomas Gleixnerd5c5e782005-11-07 11:15:51 +00002219
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002220 /* Fill in remaining MTD driver data */
2221 mtd->type = MTD_NANDFLASH;
Joern Engel5fa43392006-05-22 23:18:29 +02002222 mtd->flags = MTD_CAP_NANDFLASH;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002223 mtd->ecctype = MTD_ECC_SW;
2224 mtd->erase = onenand_erase;
2225 mtd->point = NULL;
2226 mtd->unpoint = NULL;
2227 mtd->read = onenand_read;
2228 mtd->write = onenand_write;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002229 mtd->read_oob = onenand_read_oob;
2230 mtd->write_oob = onenand_write_oob;
Kyungmin Park493c6462006-05-12 17:03:07 +03002231#ifdef CONFIG_MTD_ONENAND_OTP
2232 mtd->get_fact_prot_info = onenand_get_fact_prot_info;
2233 mtd->read_fact_prot_reg = onenand_read_fact_prot_reg;
2234 mtd->get_user_prot_info = onenand_get_user_prot_info;
2235 mtd->read_user_prot_reg = onenand_read_user_prot_reg;
2236 mtd->write_user_prot_reg = onenand_write_user_prot_reg;
2237 mtd->lock_user_prot_reg = onenand_lock_user_prot_reg;
2238#endif
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002239 mtd->sync = onenand_sync;
Kyungmin Park08f782b2006-11-16 11:29:39 +09002240 mtd->lock = onenand_lock;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002241 mtd->unlock = onenand_unlock;
Kyungmin Parka41371e2005-09-29 03:55:31 +01002242 mtd->suspend = onenand_suspend;
2243 mtd->resume = onenand_resume;
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002244 mtd->block_isbad = onenand_block_isbad;
2245 mtd->block_markbad = onenand_block_markbad;
2246 mtd->owner = THIS_MODULE;
2247
2248 /* Unlock whole block */
Kyungmin Park28b79ff2006-09-26 09:45:28 +00002249 onenand_unlock_all(mtd);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002250
Kyungmin Parkcdc00132005-09-03 07:15:48 +01002251 return this->scan_bbt(mtd);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002252}
2253
2254/**
2255 * onenand_release - [OneNAND Interface] Free resources held by the OneNAND device
2256 * @param mtd MTD device structure
2257 */
2258void onenand_release(struct mtd_info *mtd)
2259{
Kyungmin Park532a37c2005-12-16 11:17:29 +09002260 struct onenand_chip *this = mtd->priv;
2261
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002262#ifdef CONFIG_MTD_PARTITIONS
2263 /* Deregister partitions */
2264 del_mtd_partitions (mtd);
2265#endif
2266 /* Deregister the device */
2267 del_mtd_device (mtd);
Kyungmin Park532a37c2005-12-16 11:17:29 +09002268
2269 /* Free bad block table memory, if allocated */
Adrian Hunterf00b0042007-01-22 17:01:01 +09002270 if (this->bbm) {
2271 struct bbm_info *bbm = this->bbm;
2272 kfree(bbm->bbt);
Kyungmin Park532a37c2005-12-16 11:17:29 +09002273 kfree(this->bbm);
Adrian Hunterf00b0042007-01-22 17:01:01 +09002274 }
Kyungmin Park532a37c2005-12-16 11:17:29 +09002275 /* Buffer allocated by onenand_scan */
2276 if (this->options & ONENAND_PAGEBUF_ALLOC)
2277 kfree(this->page_buf);
Kyungmin Parkcd5f6342005-07-11 11:41:53 +01002278}
2279
2280EXPORT_SYMBOL_GPL(onenand_scan);
2281EXPORT_SYMBOL_GPL(onenand_release);
2282
2283MODULE_LICENSE("GPL");
2284MODULE_AUTHOR("Kyungmin Park <kyungmin.park@samsung.com>");
2285MODULE_DESCRIPTION("Generic OneNAND flash driver code");