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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * NAND flash simulator.
3 *
4 * Author: Artem B. Bityuckiy <dedekind@oktetlabs.ru>, <dedekind@infradead.org>
5 *
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00006 * Copyright (C) 2004 Nokia Corporation
Linus Torvalds1da177e2005-04-16 15:20:36 -07007 *
8 * Note: NS means "NAND Simulator".
9 * Note: Input means input TO flash chip, output means output FROM chip.
10 *
11 * This program is free software; you can redistribute it and/or modify it
12 * under the terms of the GNU General Public License as published by the
13 * Free Software Foundation; either version 2, or (at your option) any later
14 * version.
15 *
16 * This program is distributed in the hope that it will be useful, but
17 * WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General
19 * Public License for more details.
20 *
21 * You should have received a copy of the GNU General Public License
22 * along with this program; if not, write to the Free Software
23 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA
Linus Torvalds1da177e2005-04-16 15:20:36 -070024 */
25
Linus Torvalds1da177e2005-04-16 15:20:36 -070026#include <linux/init.h>
27#include <linux/types.h>
28#include <linux/module.h>
29#include <linux/moduleparam.h>
30#include <linux/vmalloc.h>
Herton Ronaldo Krzesinski596fd462012-05-16 16:21:52 -030031#include <linux/math64.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070032#include <linux/slab.h>
33#include <linux/errno.h>
34#include <linux/string.h>
35#include <linux/mtd/mtd.h>
36#include <linux/mtd/nand.h>
Ivan Djelicfc2ff592011-03-11 11:05:34 +010037#include <linux/mtd/nand_bch.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070038#include <linux/mtd/partitions.h>
39#include <linux/delay.h>
Adrian Hunter2b77a0e2007-03-19 12:46:43 +020040#include <linux/list.h>
Adrian Hunter514087e72007-03-19 12:47:45 +020041#include <linux/random.h>
Randy Dunlapa5cce422008-12-17 12:46:17 -080042#include <linux/sched.h>
Adrian Huntera9fc8992008-11-12 16:06:07 +020043#include <linux/fs.h>
44#include <linux/pagemap.h>
Ezequiel Garcia5346c272012-12-03 10:31:40 -030045#include <linux/seq_file.h>
46#include <linux/debugfs.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070047
48/* Default simulator parameters values */
49#if !defined(CONFIG_NANDSIM_FIRST_ID_BYTE) || \
50 !defined(CONFIG_NANDSIM_SECOND_ID_BYTE) || \
51 !defined(CONFIG_NANDSIM_THIRD_ID_BYTE) || \
52 !defined(CONFIG_NANDSIM_FOURTH_ID_BYTE)
53#define CONFIG_NANDSIM_FIRST_ID_BYTE 0x98
54#define CONFIG_NANDSIM_SECOND_ID_BYTE 0x39
55#define CONFIG_NANDSIM_THIRD_ID_BYTE 0xFF /* No byte */
56#define CONFIG_NANDSIM_FOURTH_ID_BYTE 0xFF /* No byte */
57#endif
58
59#ifndef CONFIG_NANDSIM_ACCESS_DELAY
60#define CONFIG_NANDSIM_ACCESS_DELAY 25
61#endif
62#ifndef CONFIG_NANDSIM_PROGRAMM_DELAY
63#define CONFIG_NANDSIM_PROGRAMM_DELAY 200
64#endif
65#ifndef CONFIG_NANDSIM_ERASE_DELAY
66#define CONFIG_NANDSIM_ERASE_DELAY 2
67#endif
68#ifndef CONFIG_NANDSIM_OUTPUT_CYCLE
69#define CONFIG_NANDSIM_OUTPUT_CYCLE 40
70#endif
71#ifndef CONFIG_NANDSIM_INPUT_CYCLE
72#define CONFIG_NANDSIM_INPUT_CYCLE 50
73#endif
74#ifndef CONFIG_NANDSIM_BUS_WIDTH
75#define CONFIG_NANDSIM_BUS_WIDTH 8
76#endif
77#ifndef CONFIG_NANDSIM_DO_DELAYS
78#define CONFIG_NANDSIM_DO_DELAYS 0
79#endif
80#ifndef CONFIG_NANDSIM_LOG
81#define CONFIG_NANDSIM_LOG 0
82#endif
83#ifndef CONFIG_NANDSIM_DBG
84#define CONFIG_NANDSIM_DBG 0
85#endif
Ben Hutchingse99e90a2010-01-29 20:58:08 +000086#ifndef CONFIG_NANDSIM_MAX_PARTS
87#define CONFIG_NANDSIM_MAX_PARTS 32
88#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -070089
90static uint first_id_byte = CONFIG_NANDSIM_FIRST_ID_BYTE;
91static uint second_id_byte = CONFIG_NANDSIM_SECOND_ID_BYTE;
92static uint third_id_byte = CONFIG_NANDSIM_THIRD_ID_BYTE;
93static uint fourth_id_byte = CONFIG_NANDSIM_FOURTH_ID_BYTE;
94static uint access_delay = CONFIG_NANDSIM_ACCESS_DELAY;
95static uint programm_delay = CONFIG_NANDSIM_PROGRAMM_DELAY;
96static uint erase_delay = CONFIG_NANDSIM_ERASE_DELAY;
97static uint output_cycle = CONFIG_NANDSIM_OUTPUT_CYCLE;
98static uint input_cycle = CONFIG_NANDSIM_INPUT_CYCLE;
99static uint bus_width = CONFIG_NANDSIM_BUS_WIDTH;
100static uint do_delays = CONFIG_NANDSIM_DO_DELAYS;
101static uint log = CONFIG_NANDSIM_LOG;
102static uint dbg = CONFIG_NANDSIM_DBG;
Ben Hutchingse99e90a2010-01-29 20:58:08 +0000103static unsigned long parts[CONFIG_NANDSIM_MAX_PARTS];
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200104static unsigned int parts_num;
Adrian Hunter514087e72007-03-19 12:47:45 +0200105static char *badblocks = NULL;
106static char *weakblocks = NULL;
107static char *weakpages = NULL;
108static unsigned int bitflips = 0;
109static char *gravepages = NULL;
Adrian Huntera5ac8ae2007-03-19 12:49:11 +0200110static unsigned int overridesize = 0;
Adrian Huntera9fc8992008-11-12 16:06:07 +0200111static char *cache_file = NULL;
Sebastian Andrzej Siewiorce85b792010-09-29 19:43:54 +0200112static unsigned int bbt;
Ivan Djelicfc2ff592011-03-11 11:05:34 +0100113static unsigned int bch;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700114
115module_param(first_id_byte, uint, 0400);
116module_param(second_id_byte, uint, 0400);
117module_param(third_id_byte, uint, 0400);
118module_param(fourth_id_byte, uint, 0400);
119module_param(access_delay, uint, 0400);
120module_param(programm_delay, uint, 0400);
121module_param(erase_delay, uint, 0400);
122module_param(output_cycle, uint, 0400);
123module_param(input_cycle, uint, 0400);
124module_param(bus_width, uint, 0400);
125module_param(do_delays, uint, 0400);
126module_param(log, uint, 0400);
127module_param(dbg, uint, 0400);
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200128module_param_array(parts, ulong, &parts_num, 0400);
Adrian Hunter514087e72007-03-19 12:47:45 +0200129module_param(badblocks, charp, 0400);
130module_param(weakblocks, charp, 0400);
131module_param(weakpages, charp, 0400);
132module_param(bitflips, uint, 0400);
133module_param(gravepages, charp, 0400);
Adrian Huntera5ac8ae2007-03-19 12:49:11 +0200134module_param(overridesize, uint, 0400);
Adrian Huntera9fc8992008-11-12 16:06:07 +0200135module_param(cache_file, charp, 0400);
Sebastian Andrzej Siewiorce85b792010-09-29 19:43:54 +0200136module_param(bbt, uint, 0400);
Ivan Djelicfc2ff592011-03-11 11:05:34 +0100137module_param(bch, uint, 0400);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700138
Adrian Huntera5ac8ae2007-03-19 12:49:11 +0200139MODULE_PARM_DESC(first_id_byte, "The first byte returned by NAND Flash 'read ID' command (manufacturer ID)");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700140MODULE_PARM_DESC(second_id_byte, "The second byte returned by NAND Flash 'read ID' command (chip ID)");
141MODULE_PARM_DESC(third_id_byte, "The third byte returned by NAND Flash 'read ID' command");
142MODULE_PARM_DESC(fourth_id_byte, "The fourth byte returned by NAND Flash 'read ID' command");
Adrian Huntera9fc8992008-11-12 16:06:07 +0200143MODULE_PARM_DESC(access_delay, "Initial page access delay (microseconds)");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700144MODULE_PARM_DESC(programm_delay, "Page programm delay (microseconds");
145MODULE_PARM_DESC(erase_delay, "Sector erase delay (milliseconds)");
Andrey Yurovsky6029a3a2009-12-17 12:31:20 -0800146MODULE_PARM_DESC(output_cycle, "Word output (from flash) time (nanoseconds)");
147MODULE_PARM_DESC(input_cycle, "Word input (to flash) time (nanoseconds)");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700148MODULE_PARM_DESC(bus_width, "Chip's bus width (8- or 16-bit)");
149MODULE_PARM_DESC(do_delays, "Simulate NAND delays using busy-waits if not zero");
150MODULE_PARM_DESC(log, "Perform logging if not zero");
151MODULE_PARM_DESC(dbg, "Output debug information if not zero");
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200152MODULE_PARM_DESC(parts, "Partition sizes (in erase blocks) separated by commas");
Adrian Hunter514087e72007-03-19 12:47:45 +0200153/* Page and erase block positions for the following parameters are independent of any partitions */
154MODULE_PARM_DESC(badblocks, "Erase blocks that are initially marked bad, separated by commas");
155MODULE_PARM_DESC(weakblocks, "Weak erase blocks [: remaining erase cycles (defaults to 3)]"
156 " separated by commas e.g. 113:2 means eb 113"
157 " can be erased only twice before failing");
158MODULE_PARM_DESC(weakpages, "Weak pages [: maximum writes (defaults to 3)]"
159 " separated by commas e.g. 1401:2 means page 1401"
160 " can be written only twice before failing");
161MODULE_PARM_DESC(bitflips, "Maximum number of random bit flips per page (zero by default)");
162MODULE_PARM_DESC(gravepages, "Pages that lose data [: maximum reads (defaults to 3)]"
163 " separated by commas e.g. 1401:2 means page 1401"
164 " can be read only twice before failing");
Adrian Huntera5ac8ae2007-03-19 12:49:11 +0200165MODULE_PARM_DESC(overridesize, "Specifies the NAND Flash size overriding the ID bytes. "
166 "The size is specified in erase blocks and as the exponent of a power of two"
167 " e.g. 5 means a size of 32 erase blocks");
Adrian Huntera9fc8992008-11-12 16:06:07 +0200168MODULE_PARM_DESC(cache_file, "File to use to cache nand pages instead of memory");
Sebastian Andrzej Siewiorce85b792010-09-29 19:43:54 +0200169MODULE_PARM_DESC(bbt, "0 OOB, 1 BBT with marker in OOB, 2 BBT with marker in data area");
Ivan Djelicfc2ff592011-03-11 11:05:34 +0100170MODULE_PARM_DESC(bch, "Enable BCH ecc and set how many bits should "
171 "be correctable in 512-byte blocks");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700172
173/* The largest possible page size */
Sebastian Andrzej Siewior75352662009-11-29 19:07:57 +0100174#define NS_LARGEST_PAGE_SIZE 4096
Thomas Gleixner61b03bd2005-11-07 11:15:49 +0000175
Linus Torvalds1da177e2005-04-16 15:20:36 -0700176/* The prefix for simulator output */
177#define NS_OUTPUT_PREFIX "[nandsim]"
178
179/* Simulator's output macros (logging, debugging, warning, error) */
180#define NS_LOG(args...) \
181 do { if (log) printk(KERN_DEBUG NS_OUTPUT_PREFIX " log: " args); } while(0)
182#define NS_DBG(args...) \
183 do { if (dbg) printk(KERN_DEBUG NS_OUTPUT_PREFIX " debug: " args); } while(0)
184#define NS_WARN(args...) \
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200185 do { printk(KERN_WARNING NS_OUTPUT_PREFIX " warning: " args); } while(0)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700186#define NS_ERR(args...) \
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200187 do { printk(KERN_ERR NS_OUTPUT_PREFIX " error: " args); } while(0)
Adrian Hunter57aa6b52007-03-19 12:40:41 +0200188#define NS_INFO(args...) \
189 do { printk(KERN_INFO NS_OUTPUT_PREFIX " " args); } while(0)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700190
191/* Busy-wait delay macros (microseconds, milliseconds) */
192#define NS_UDELAY(us) \
193 do { if (do_delays) udelay(us); } while(0)
194#define NS_MDELAY(us) \
195 do { if (do_delays) mdelay(us); } while(0)
Thomas Gleixner61b03bd2005-11-07 11:15:49 +0000196
Linus Torvalds1da177e2005-04-16 15:20:36 -0700197/* Is the nandsim structure initialized ? */
198#define NS_IS_INITIALIZED(ns) ((ns)->geom.totsz != 0)
199
200/* Good operation completion status */
201#define NS_STATUS_OK(ns) (NAND_STATUS_READY | (NAND_STATUS_WP * ((ns)->lines.wp == 0)))
202
203/* Operation failed completion status */
Thomas Gleixner61b03bd2005-11-07 11:15:49 +0000204#define NS_STATUS_FAILED(ns) (NAND_STATUS_FAIL | NS_STATUS_OK(ns))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700205
206/* Calculate the page offset in flash RAM image by (row, column) address */
207#define NS_RAW_OFFSET(ns) \
208 (((ns)->regs.row << (ns)->geom.pgshift) + ((ns)->regs.row * (ns)->geom.oobsz) + (ns)->regs.column)
Thomas Gleixner61b03bd2005-11-07 11:15:49 +0000209
Linus Torvalds1da177e2005-04-16 15:20:36 -0700210/* Calculate the OOB offset in flash RAM image by (row, column) address */
211#define NS_RAW_OFFSET_OOB(ns) (NS_RAW_OFFSET(ns) + ns->geom.pgsz)
212
213/* After a command is input, the simulator goes to one of the following states */
214#define STATE_CMD_READ0 0x00000001 /* read data from the beginning of page */
215#define STATE_CMD_READ1 0x00000002 /* read data from the second half of page */
Artem Bityutskiy4a0c50c2006-12-06 21:52:32 +0200216#define STATE_CMD_READSTART 0x00000003 /* read data second command (large page devices) */
srimugunthandaf05ec2010-11-13 12:46:05 +0200217#define STATE_CMD_PAGEPROG 0x00000004 /* start page program */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700218#define STATE_CMD_READOOB 0x00000005 /* read OOB area */
219#define STATE_CMD_ERASE1 0x00000006 /* sector erase first command */
220#define STATE_CMD_STATUS 0x00000007 /* read status */
srimugunthandaf05ec2010-11-13 12:46:05 +0200221#define STATE_CMD_SEQIN 0x00000009 /* sequential data input */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700222#define STATE_CMD_READID 0x0000000A /* read ID */
223#define STATE_CMD_ERASE2 0x0000000B /* sector erase second command */
224#define STATE_CMD_RESET 0x0000000C /* reset */
Artem Bityutskiy74216be2008-07-30 11:18:42 +0300225#define STATE_CMD_RNDOUT 0x0000000D /* random output command */
226#define STATE_CMD_RNDOUTSTART 0x0000000E /* random output start command */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700227#define STATE_CMD_MASK 0x0000000F /* command states mask */
228
Joe Perches8e87d782008-02-03 17:22:34 +0200229/* After an address is input, the simulator goes to one of these states */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700230#define STATE_ADDR_PAGE 0x00000010 /* full (row, column) address is accepted */
231#define STATE_ADDR_SEC 0x00000020 /* sector address was accepted */
Artem Bityutskiy74216be2008-07-30 11:18:42 +0300232#define STATE_ADDR_COLUMN 0x00000030 /* column address was accepted */
233#define STATE_ADDR_ZERO 0x00000040 /* one byte zero address was accepted */
234#define STATE_ADDR_MASK 0x00000070 /* address states mask */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700235
srimugunthandaf05ec2010-11-13 12:46:05 +0200236/* During data input/output the simulator is in these states */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700237#define STATE_DATAIN 0x00000100 /* waiting for data input */
238#define STATE_DATAIN_MASK 0x00000100 /* data input states mask */
239
240#define STATE_DATAOUT 0x00001000 /* waiting for page data output */
241#define STATE_DATAOUT_ID 0x00002000 /* waiting for ID bytes output */
242#define STATE_DATAOUT_STATUS 0x00003000 /* waiting for status output */
243#define STATE_DATAOUT_STATUS_M 0x00004000 /* waiting for multi-plane status output */
244#define STATE_DATAOUT_MASK 0x00007000 /* data output states mask */
245
246/* Previous operation is done, ready to accept new requests */
247#define STATE_READY 0x00000000
248
249/* This state is used to mark that the next state isn't known yet */
250#define STATE_UNKNOWN 0x10000000
251
252/* Simulator's actions bit masks */
253#define ACTION_CPY 0x00100000 /* copy page/OOB to the internal buffer */
srimugunthandaf05ec2010-11-13 12:46:05 +0200254#define ACTION_PRGPAGE 0x00200000 /* program the internal buffer to flash */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700255#define ACTION_SECERASE 0x00300000 /* erase sector */
256#define ACTION_ZEROOFF 0x00400000 /* don't add any offset to address */
257#define ACTION_HALFOFF 0x00500000 /* add to address half of page */
258#define ACTION_OOBOFF 0x00600000 /* add to address OOB offset */
259#define ACTION_MASK 0x00700000 /* action mask */
260
Artem Bityutskiy74216be2008-07-30 11:18:42 +0300261#define NS_OPER_NUM 13 /* Number of operations supported by the simulator */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700262#define NS_OPER_STATES 6 /* Maximum number of states in operation */
263
264#define OPT_ANY 0xFFFFFFFF /* any chip supports this operation */
265#define OPT_PAGE256 0x00000001 /* 256-byte page chips */
266#define OPT_PAGE512 0x00000002 /* 512-byte page chips */
267#define OPT_PAGE2048 0x00000008 /* 2048-byte page chips */
268#define OPT_SMARTMEDIA 0x00000010 /* SmartMedia technology chips */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700269#define OPT_PAGE512_8BIT 0x00000040 /* 512-byte page chips with 8-bit bus width */
Sebastian Andrzej Siewior75352662009-11-29 19:07:57 +0100270#define OPT_PAGE4096 0x00000080 /* 4096-byte page chips */
271#define OPT_LARGEPAGE (OPT_PAGE2048 | OPT_PAGE4096) /* 2048 & 4096-byte page chips */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700272#define OPT_SMALLPAGE (OPT_PAGE256 | OPT_PAGE512) /* 256 and 512-byte page chips */
273
srimugunthandaf05ec2010-11-13 12:46:05 +0200274/* Remove action bits from state */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700275#define NS_STATE(x) ((x) & ~ACTION_MASK)
Thomas Gleixner61b03bd2005-11-07 11:15:49 +0000276
277/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700278 * Maximum previous states which need to be saved. Currently saving is
srimugunthandaf05ec2010-11-13 12:46:05 +0200279 * only needed for page program operation with preceded read command
Linus Torvalds1da177e2005-04-16 15:20:36 -0700280 * (which is only valid for 512-byte pages).
281 */
282#define NS_MAX_PREVSTATES 1
283
Adrian Huntera9fc8992008-11-12 16:06:07 +0200284/* Maximum page cache pages needed to read or write a NAND page to the cache_file */
285#define NS_MAX_HELD_PAGES 16
286
Ezequiel Garcia5346c272012-12-03 10:31:40 -0300287struct nandsim_debug_info {
288 struct dentry *dfs_root;
289 struct dentry *dfs_wear_report;
290};
291
Thomas Gleixner61b03bd2005-11-07 11:15:49 +0000292/*
Vijay Kumard086d432006-10-08 22:02:31 +0530293 * A union to represent flash memory contents and flash buffer.
294 */
295union ns_mem {
296 u_char *byte; /* for byte access */
297 uint16_t *word; /* for 16-bit word access */
298};
299
300/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700301 * The structure which describes all the internal simulator data.
302 */
303struct nandsim {
Ben Hutchingse99e90a2010-01-29 20:58:08 +0000304 struct mtd_partition partitions[CONFIG_NANDSIM_MAX_PARTS];
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200305 unsigned int nbparts;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700306
307 uint busw; /* flash chip bus width (8 or 16) */
308 u_char ids[4]; /* chip's ID bytes */
309 uint32_t options; /* chip's characteristic bits */
310 uint32_t state; /* current chip state */
311 uint32_t nxstate; /* next expected state */
Thomas Gleixner61b03bd2005-11-07 11:15:49 +0000312
Linus Torvalds1da177e2005-04-16 15:20:36 -0700313 uint32_t *op; /* current operation, NULL operations isn't known yet */
314 uint32_t pstates[NS_MAX_PREVSTATES]; /* previous states */
315 uint16_t npstates; /* number of previous states saved */
316 uint16_t stateidx; /* current state index */
317
Vijay Kumard086d432006-10-08 22:02:31 +0530318 /* The simulated NAND flash pages array */
319 union ns_mem *pages;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700320
Alexey Korolev8a4c2492008-11-13 13:40:38 +0000321 /* Slab allocator for nand pages */
322 struct kmem_cache *nand_pages_slab;
323
Linus Torvalds1da177e2005-04-16 15:20:36 -0700324 /* Internal buffer of page + OOB size bytes */
Vijay Kumard086d432006-10-08 22:02:31 +0530325 union ns_mem buf;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700326
327 /* NAND flash "geometry" */
Artem Bityutskiy0bfa4df2010-04-01 15:22:50 +0300328 struct {
Adrian Hunter6eda7a52008-05-30 15:56:26 +0300329 uint64_t totsz; /* total flash size, bytes */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700330 uint32_t secsz; /* flash sector (erase block) size, bytes */
331 uint pgsz; /* NAND flash page size, bytes */
332 uint oobsz; /* page OOB area size, bytes */
Adrian Hunter6eda7a52008-05-30 15:56:26 +0300333 uint64_t totszoob; /* total flash size including OOB, bytes */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700334 uint pgszoob; /* page size including OOB , bytes*/
335 uint secszoob; /* sector size including OOB, bytes */
336 uint pgnum; /* total number of pages */
337 uint pgsec; /* number of pages per sector */
338 uint secshift; /* bits number in sector size */
339 uint pgshift; /* bits number in page size */
340 uint oobshift; /* bits number in OOB size */
341 uint pgaddrbytes; /* bytes per page address */
342 uint secaddrbytes; /* bytes per sector address */
343 uint idbytes; /* the number ID bytes that this chip outputs */
344 } geom;
345
346 /* NAND flash internal registers */
Artem Bityutskiy0bfa4df2010-04-01 15:22:50 +0300347 struct {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700348 unsigned command; /* the command register */
349 u_char status; /* the status register */
350 uint row; /* the page number */
351 uint column; /* the offset within page */
352 uint count; /* internal counter */
353 uint num; /* number of bytes which must be processed */
354 uint off; /* fixed page offset */
355 } regs;
356
357 /* NAND flash lines state */
Artem Bityutskiy0bfa4df2010-04-01 15:22:50 +0300358 struct {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700359 int ce; /* chip Enable */
360 int cle; /* command Latch Enable */
361 int ale; /* address Latch Enable */
362 int wp; /* write Protect */
363 } lines;
Adrian Huntera9fc8992008-11-12 16:06:07 +0200364
365 /* Fields needed when using a cache file */
366 struct file *cfile; /* Open file */
367 unsigned char *pages_written; /* Which pages have been written */
368 void *file_buf;
369 struct page *held_pages[NS_MAX_HELD_PAGES];
370 int held_cnt;
Ezequiel Garcia5346c272012-12-03 10:31:40 -0300371
372 struct nandsim_debug_info dbg;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700373};
374
375/*
376 * Operations array. To perform any operation the simulator must pass
377 * through the correspondent states chain.
378 */
379static struct nandsim_operations {
380 uint32_t reqopts; /* options which are required to perform the operation */
381 uint32_t states[NS_OPER_STATES]; /* operation's states */
382} ops[NS_OPER_NUM] = {
383 /* Read page + OOB from the beginning */
384 {OPT_SMALLPAGE, {STATE_CMD_READ0 | ACTION_ZEROOFF, STATE_ADDR_PAGE | ACTION_CPY,
385 STATE_DATAOUT, STATE_READY}},
386 /* Read page + OOB from the second half */
387 {OPT_PAGE512_8BIT, {STATE_CMD_READ1 | ACTION_HALFOFF, STATE_ADDR_PAGE | ACTION_CPY,
388 STATE_DATAOUT, STATE_READY}},
389 /* Read OOB */
390 {OPT_SMALLPAGE, {STATE_CMD_READOOB | ACTION_OOBOFF, STATE_ADDR_PAGE | ACTION_CPY,
391 STATE_DATAOUT, STATE_READY}},
srimugunthandaf05ec2010-11-13 12:46:05 +0200392 /* Program page starting from the beginning */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700393 {OPT_ANY, {STATE_CMD_SEQIN, STATE_ADDR_PAGE, STATE_DATAIN,
394 STATE_CMD_PAGEPROG | ACTION_PRGPAGE, STATE_READY}},
srimugunthandaf05ec2010-11-13 12:46:05 +0200395 /* Program page starting from the beginning */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700396 {OPT_SMALLPAGE, {STATE_CMD_READ0, STATE_CMD_SEQIN | ACTION_ZEROOFF, STATE_ADDR_PAGE,
397 STATE_DATAIN, STATE_CMD_PAGEPROG | ACTION_PRGPAGE, STATE_READY}},
srimugunthandaf05ec2010-11-13 12:46:05 +0200398 /* Program page starting from the second half */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700399 {OPT_PAGE512, {STATE_CMD_READ1, STATE_CMD_SEQIN | ACTION_HALFOFF, STATE_ADDR_PAGE,
400 STATE_DATAIN, STATE_CMD_PAGEPROG | ACTION_PRGPAGE, STATE_READY}},
srimugunthandaf05ec2010-11-13 12:46:05 +0200401 /* Program OOB */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700402 {OPT_SMALLPAGE, {STATE_CMD_READOOB, STATE_CMD_SEQIN | ACTION_OOBOFF, STATE_ADDR_PAGE,
403 STATE_DATAIN, STATE_CMD_PAGEPROG | ACTION_PRGPAGE, STATE_READY}},
404 /* Erase sector */
405 {OPT_ANY, {STATE_CMD_ERASE1, STATE_ADDR_SEC, STATE_CMD_ERASE2 | ACTION_SECERASE, STATE_READY}},
406 /* Read status */
407 {OPT_ANY, {STATE_CMD_STATUS, STATE_DATAOUT_STATUS, STATE_READY}},
Linus Torvalds1da177e2005-04-16 15:20:36 -0700408 /* Read ID */
409 {OPT_ANY, {STATE_CMD_READID, STATE_ADDR_ZERO, STATE_DATAOUT_ID, STATE_READY}},
410 /* Large page devices read page */
411 {OPT_LARGEPAGE, {STATE_CMD_READ0, STATE_ADDR_PAGE, STATE_CMD_READSTART | ACTION_CPY,
Artem Bityutskiy74216be2008-07-30 11:18:42 +0300412 STATE_DATAOUT, STATE_READY}},
413 /* Large page devices random page read */
414 {OPT_LARGEPAGE, {STATE_CMD_RNDOUT, STATE_ADDR_COLUMN, STATE_CMD_RNDOUTSTART | ACTION_CPY,
415 STATE_DATAOUT, STATE_READY}},
Linus Torvalds1da177e2005-04-16 15:20:36 -0700416};
417
Adrian Hunter514087e72007-03-19 12:47:45 +0200418struct weak_block {
419 struct list_head list;
420 unsigned int erase_block_no;
421 unsigned int max_erases;
422 unsigned int erases_done;
423};
424
425static LIST_HEAD(weak_blocks);
426
427struct weak_page {
428 struct list_head list;
429 unsigned int page_no;
430 unsigned int max_writes;
431 unsigned int writes_done;
432};
433
434static LIST_HEAD(weak_pages);
435
436struct grave_page {
437 struct list_head list;
438 unsigned int page_no;
439 unsigned int max_reads;
440 unsigned int reads_done;
441};
442
443static LIST_HEAD(grave_pages);
444
Adrian Hunter57aa6b52007-03-19 12:40:41 +0200445static unsigned long *erase_block_wear = NULL;
446static unsigned int wear_eb_count = 0;
447static unsigned long total_wear = 0;
Adrian Hunter57aa6b52007-03-19 12:40:41 +0200448
Linus Torvalds1da177e2005-04-16 15:20:36 -0700449/* MTD structure for NAND controller */
450static struct mtd_info *nsmtd;
451
Ezequiel Garcia5346c272012-12-03 10:31:40 -0300452static int nandsim_debugfs_show(struct seq_file *m, void *private)
453{
454 unsigned long wmin = -1, wmax = 0, avg;
455 unsigned long deciles[10], decile_max[10], tot = 0;
456 unsigned int i;
457
458 /* Calc wear stats */
459 for (i = 0; i < wear_eb_count; ++i) {
460 unsigned long wear = erase_block_wear[i];
461 if (wear < wmin)
462 wmin = wear;
463 if (wear > wmax)
464 wmax = wear;
465 tot += wear;
466 }
467
468 for (i = 0; i < 9; ++i) {
469 deciles[i] = 0;
470 decile_max[i] = (wmax * (i + 1) + 5) / 10;
471 }
472 deciles[9] = 0;
473 decile_max[9] = wmax;
474 for (i = 0; i < wear_eb_count; ++i) {
475 int d;
476 unsigned long wear = erase_block_wear[i];
477 for (d = 0; d < 10; ++d)
478 if (wear <= decile_max[d]) {
479 deciles[d] += 1;
480 break;
481 }
482 }
483 avg = tot / wear_eb_count;
484
485 /* Output wear report */
486 seq_printf(m, "Total numbers of erases: %lu\n", tot);
487 seq_printf(m, "Number of erase blocks: %u\n", wear_eb_count);
488 seq_printf(m, "Average number of erases: %lu\n", avg);
489 seq_printf(m, "Maximum number of erases: %lu\n", wmax);
490 seq_printf(m, "Minimum number of erases: %lu\n", wmin);
491 for (i = 0; i < 10; ++i) {
492 unsigned long from = (i ? decile_max[i - 1] + 1 : 0);
493 if (from > decile_max[i])
494 continue;
495 seq_printf(m, "Number of ebs with erase counts from %lu to %lu : %lu\n",
496 from,
497 decile_max[i],
498 deciles[i]);
499 }
500
501 return 0;
502}
503
504static int nandsim_debugfs_open(struct inode *inode, struct file *file)
505{
506 return single_open(file, nandsim_debugfs_show, inode->i_private);
507}
508
509static const struct file_operations dfs_fops = {
510 .open = nandsim_debugfs_open,
511 .read = seq_read,
512 .llseek = seq_lseek,
513 .release = single_release,
514};
515
516/**
517 * nandsim_debugfs_create - initialize debugfs
518 * @dev: nandsim device description object
519 *
520 * This function creates all debugfs files for UBI device @ubi. Returns zero in
521 * case of success and a negative error code in case of failure.
522 */
523static int nandsim_debugfs_create(struct nandsim *dev)
524{
525 struct nandsim_debug_info *dbg = &dev->dbg;
526 struct dentry *dent;
527 int err;
528
529 if (!IS_ENABLED(CONFIG_DEBUG_FS))
530 return 0;
531
532 dent = debugfs_create_dir("nandsim", NULL);
533 if (IS_ERR_OR_NULL(dent)) {
534 int err = dent ? -ENODEV : PTR_ERR(dent);
535
536 NS_ERR("cannot create \"nandsim\" debugfs directory, err %d\n",
537 err);
538 return err;
539 }
540 dbg->dfs_root = dent;
541
542 dent = debugfs_create_file("wear_report", S_IRUSR,
543 dbg->dfs_root, dev, &dfs_fops);
544 if (IS_ERR_OR_NULL(dent))
545 goto out_remove;
546 dbg->dfs_wear_report = dent;
547
548 return 0;
549
550out_remove:
551 debugfs_remove_recursive(dbg->dfs_root);
552 err = dent ? PTR_ERR(dent) : -ENODEV;
553 return err;
554}
555
556/**
557 * nandsim_debugfs_remove - destroy all debugfs files
558 */
559static void nandsim_debugfs_remove(struct nandsim *ns)
560{
561 if (IS_ENABLED(CONFIG_DEBUG_FS))
562 debugfs_remove_recursive(ns->dbg.dfs_root);
563}
564
Linus Torvalds1da177e2005-04-16 15:20:36 -0700565/*
Alexey Korolev8a4c2492008-11-13 13:40:38 +0000566 * Allocate array of page pointers, create slab allocation for an array
567 * and initialize the array by NULL pointers.
Vijay Kumard086d432006-10-08 22:02:31 +0530568 *
569 * RETURNS: 0 if success, -ENOMEM if memory alloc fails.
570 */
Vijay Kumara5602142006-10-14 21:33:34 +0530571static int alloc_device(struct nandsim *ns)
Vijay Kumard086d432006-10-08 22:02:31 +0530572{
Adrian Huntera9fc8992008-11-12 16:06:07 +0200573 struct file *cfile;
574 int i, err;
575
576 if (cache_file) {
577 cfile = filp_open(cache_file, O_CREAT | O_RDWR | O_LARGEFILE, 0600);
578 if (IS_ERR(cfile))
579 return PTR_ERR(cfile);
580 if (!cfile->f_op || (!cfile->f_op->read && !cfile->f_op->aio_read)) {
581 NS_ERR("alloc_device: cache file not readable\n");
582 err = -EINVAL;
583 goto err_close;
584 }
585 if (!cfile->f_op->write && !cfile->f_op->aio_write) {
586 NS_ERR("alloc_device: cache file not writeable\n");
587 err = -EINVAL;
588 goto err_close;
589 }
Joe Perches309b5e42010-11-04 20:07:40 -0700590 ns->pages_written = vzalloc(ns->geom.pgnum);
Adrian Huntera9fc8992008-11-12 16:06:07 +0200591 if (!ns->pages_written) {
592 NS_ERR("alloc_device: unable to allocate pages written array\n");
593 err = -ENOMEM;
594 goto err_close;
595 }
596 ns->file_buf = kmalloc(ns->geom.pgszoob, GFP_KERNEL);
597 if (!ns->file_buf) {
598 NS_ERR("alloc_device: unable to allocate file buf\n");
599 err = -ENOMEM;
600 goto err_free;
601 }
602 ns->cfile = cfile;
Adrian Huntera9fc8992008-11-12 16:06:07 +0200603 return 0;
604 }
Vijay Kumard086d432006-10-08 22:02:31 +0530605
606 ns->pages = vmalloc(ns->geom.pgnum * sizeof(union ns_mem));
607 if (!ns->pages) {
Adrian Huntera9fc8992008-11-12 16:06:07 +0200608 NS_ERR("alloc_device: unable to allocate page array\n");
Vijay Kumard086d432006-10-08 22:02:31 +0530609 return -ENOMEM;
610 }
611 for (i = 0; i < ns->geom.pgnum; i++) {
612 ns->pages[i].byte = NULL;
613 }
Alexey Korolev8a4c2492008-11-13 13:40:38 +0000614 ns->nand_pages_slab = kmem_cache_create("nandsim",
615 ns->geom.pgszoob, 0, 0, NULL);
616 if (!ns->nand_pages_slab) {
617 NS_ERR("cache_create: unable to create kmem_cache\n");
618 return -ENOMEM;
619 }
Vijay Kumard086d432006-10-08 22:02:31 +0530620
621 return 0;
Adrian Huntera9fc8992008-11-12 16:06:07 +0200622
623err_free:
624 vfree(ns->pages_written);
625err_close:
626 filp_close(cfile, NULL);
627 return err;
Vijay Kumard086d432006-10-08 22:02:31 +0530628}
629
630/*
631 * Free any allocated pages, and free the array of page pointers.
632 */
Vijay Kumara5602142006-10-14 21:33:34 +0530633static void free_device(struct nandsim *ns)
Vijay Kumard086d432006-10-08 22:02:31 +0530634{
635 int i;
636
Adrian Huntera9fc8992008-11-12 16:06:07 +0200637 if (ns->cfile) {
638 kfree(ns->file_buf);
639 vfree(ns->pages_written);
640 filp_close(ns->cfile, NULL);
641 return;
642 }
643
Vijay Kumard086d432006-10-08 22:02:31 +0530644 if (ns->pages) {
645 for (i = 0; i < ns->geom.pgnum; i++) {
646 if (ns->pages[i].byte)
Alexey Korolev8a4c2492008-11-13 13:40:38 +0000647 kmem_cache_free(ns->nand_pages_slab,
648 ns->pages[i].byte);
Vijay Kumard086d432006-10-08 22:02:31 +0530649 }
Alexey Korolev8a4c2492008-11-13 13:40:38 +0000650 kmem_cache_destroy(ns->nand_pages_slab);
Vijay Kumard086d432006-10-08 22:02:31 +0530651 vfree(ns->pages);
652 }
653}
654
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200655static char *get_partition_name(int i)
656{
657 char buf[64];
658 sprintf(buf, "NAND simulator partition %d", i);
659 return kstrdup(buf, GFP_KERNEL);
660}
661
Vijay Kumard086d432006-10-08 22:02:31 +0530662/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700663 * Initialize the nandsim structure.
664 *
665 * RETURNS: 0 if success, -ERRNO if failure.
666 */
Vijay Kumara5602142006-10-14 21:33:34 +0530667static int init_nandsim(struct mtd_info *mtd)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700668{
Kulikov Vasiliy7b8516b2010-06-29 14:15:17 +0400669 struct nand_chip *chip = mtd->priv;
670 struct nandsim *ns = chip->priv;
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200671 int i, ret = 0;
David Woodhouse0f07a0b2008-12-10 14:01:46 +0000672 uint64_t remains;
673 uint64_t next_offset;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700674
675 if (NS_IS_INITIALIZED(ns)) {
676 NS_ERR("init_nandsim: nandsim is already initialized\n");
677 return -EIO;
678 }
679
680 /* Force mtd to not do delays */
681 chip->chip_delay = 0;
682
683 /* Initialize the NAND flash parameters */
684 ns->busw = chip->options & NAND_BUSWIDTH_16 ? 16 : 8;
685 ns->geom.totsz = mtd->size;
Joern Engel28318772006-05-22 23:18:05 +0200686 ns->geom.pgsz = mtd->writesize;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700687 ns->geom.oobsz = mtd->oobsize;
688 ns->geom.secsz = mtd->erasesize;
689 ns->geom.pgszoob = ns->geom.pgsz + ns->geom.oobsz;
Herton Ronaldo Krzesinski596fd462012-05-16 16:21:52 -0300690 ns->geom.pgnum = div_u64(ns->geom.totsz, ns->geom.pgsz);
Adrian Hunter6eda7a52008-05-30 15:56:26 +0300691 ns->geom.totszoob = ns->geom.totsz + (uint64_t)ns->geom.pgnum * ns->geom.oobsz;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700692 ns->geom.secshift = ffs(ns->geom.secsz) - 1;
693 ns->geom.pgshift = chip->page_shift;
694 ns->geom.oobshift = ffs(ns->geom.oobsz) - 1;
695 ns->geom.pgsec = ns->geom.secsz / ns->geom.pgsz;
696 ns->geom.secszoob = ns->geom.secsz + ns->geom.oobsz * ns->geom.pgsec;
697 ns->options = 0;
698
699 if (ns->geom.pgsz == 256) {
700 ns->options |= OPT_PAGE256;
701 }
702 else if (ns->geom.pgsz == 512) {
Brian Norris831d3162012-05-01 17:12:53 -0700703 ns->options |= OPT_PAGE512;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700704 if (ns->busw == 8)
705 ns->options |= OPT_PAGE512_8BIT;
706 } else if (ns->geom.pgsz == 2048) {
707 ns->options |= OPT_PAGE2048;
Sebastian Andrzej Siewior75352662009-11-29 19:07:57 +0100708 } else if (ns->geom.pgsz == 4096) {
709 ns->options |= OPT_PAGE4096;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700710 } else {
711 NS_ERR("init_nandsim: unknown page size %u\n", ns->geom.pgsz);
712 return -EIO;
713 }
714
715 if (ns->options & OPT_SMALLPAGE) {
Adrian Hunteraf3decc2008-05-30 15:56:18 +0300716 if (ns->geom.totsz <= (32 << 20)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700717 ns->geom.pgaddrbytes = 3;
718 ns->geom.secaddrbytes = 2;
719 } else {
720 ns->geom.pgaddrbytes = 4;
721 ns->geom.secaddrbytes = 3;
722 }
723 } else {
724 if (ns->geom.totsz <= (128 << 20)) {
Artem Bityutskiy4a0c50c2006-12-06 21:52:32 +0200725 ns->geom.pgaddrbytes = 4;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700726 ns->geom.secaddrbytes = 2;
727 } else {
728 ns->geom.pgaddrbytes = 5;
729 ns->geom.secaddrbytes = 3;
730 }
731 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +0000732
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200733 /* Fill the partition_info structure */
734 if (parts_num > ARRAY_SIZE(ns->partitions)) {
735 NS_ERR("too many partitions.\n");
736 ret = -EINVAL;
737 goto error;
738 }
739 remains = ns->geom.totsz;
740 next_offset = 0;
741 for (i = 0; i < parts_num; ++i) {
David Woodhouse0f07a0b2008-12-10 14:01:46 +0000742 uint64_t part_sz = (uint64_t)parts[i] * ns->geom.secsz;
Adrian Hunter6eda7a52008-05-30 15:56:26 +0300743
744 if (!part_sz || part_sz > remains) {
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200745 NS_ERR("bad partition size.\n");
746 ret = -EINVAL;
747 goto error;
748 }
749 ns->partitions[i].name = get_partition_name(i);
750 ns->partitions[i].offset = next_offset;
Adrian Hunter6eda7a52008-05-30 15:56:26 +0300751 ns->partitions[i].size = part_sz;
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200752 next_offset += ns->partitions[i].size;
753 remains -= ns->partitions[i].size;
754 }
755 ns->nbparts = parts_num;
756 if (remains) {
757 if (parts_num + 1 > ARRAY_SIZE(ns->partitions)) {
758 NS_ERR("too many partitions.\n");
759 ret = -EINVAL;
760 goto error;
761 }
762 ns->partitions[i].name = get_partition_name(i);
763 ns->partitions[i].offset = next_offset;
764 ns->partitions[i].size = remains;
765 ns->nbparts += 1;
766 }
767
Linus Torvalds1da177e2005-04-16 15:20:36 -0700768 /* Detect how many ID bytes the NAND chip outputs */
Artem Bityutskiy68aa3522013-03-04 16:05:00 +0200769 for (i = 0; nand_flash_ids[i].name != NULL; i++) {
770 if (second_id_byte != nand_flash_ids[i].dev_id)
771 continue;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700772 }
773
774 if (ns->busw == 16)
775 NS_WARN("16-bit flashes support wasn't tested\n");
776
Andrew Mortone4c094a2008-07-30 12:35:04 -0700777 printk("flash size: %llu MiB\n",
778 (unsigned long long)ns->geom.totsz >> 20);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700779 printk("page size: %u bytes\n", ns->geom.pgsz);
780 printk("OOB area size: %u bytes\n", ns->geom.oobsz);
781 printk("sector size: %u KiB\n", ns->geom.secsz >> 10);
782 printk("pages number: %u\n", ns->geom.pgnum);
783 printk("pages per sector: %u\n", ns->geom.pgsec);
784 printk("bus width: %u\n", ns->busw);
785 printk("bits in sector size: %u\n", ns->geom.secshift);
786 printk("bits in page size: %u\n", ns->geom.pgshift);
Andrew Mortone4c094a2008-07-30 12:35:04 -0700787 printk("bits in OOB size: %u\n", ns->geom.oobshift);
788 printk("flash size with OOB: %llu KiB\n",
789 (unsigned long long)ns->geom.totszoob >> 10);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700790 printk("page address bytes: %u\n", ns->geom.pgaddrbytes);
791 printk("sector address bytes: %u\n", ns->geom.secaddrbytes);
792 printk("options: %#x\n", ns->options);
793
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200794 if ((ret = alloc_device(ns)) != 0)
Vijay Kumard086d432006-10-08 22:02:31 +0530795 goto error;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700796
797 /* Allocate / initialize the internal buffer */
798 ns->buf.byte = kmalloc(ns->geom.pgszoob, GFP_KERNEL);
799 if (!ns->buf.byte) {
800 NS_ERR("init_nandsim: unable to allocate %u bytes for the internal buffer\n",
801 ns->geom.pgszoob);
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200802 ret = -ENOMEM;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700803 goto error;
804 }
805 memset(ns->buf.byte, 0xFF, ns->geom.pgszoob);
806
Linus Torvalds1da177e2005-04-16 15:20:36 -0700807 return 0;
808
809error:
Vijay Kumard086d432006-10-08 22:02:31 +0530810 free_device(ns);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700811
Adrian Hunter2b77a0e2007-03-19 12:46:43 +0200812 return ret;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700813}
814
815/*
816 * Free the nandsim structure.
817 */
Vijay Kumara5602142006-10-14 21:33:34 +0530818static void free_nandsim(struct nandsim *ns)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700819{
820 kfree(ns->buf.byte);
Vijay Kumard086d432006-10-08 22:02:31 +0530821 free_device(ns);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700822
823 return;
824}
825
Adrian Hunter514087e72007-03-19 12:47:45 +0200826static int parse_badblocks(struct nandsim *ns, struct mtd_info *mtd)
827{
828 char *w;
829 int zero_ok;
830 unsigned int erase_block_no;
831 loff_t offset;
832
833 if (!badblocks)
834 return 0;
835 w = badblocks;
836 do {
837 zero_ok = (*w == '0' ? 1 : 0);
838 erase_block_no = simple_strtoul(w, &w, 0);
839 if (!zero_ok && !erase_block_no) {
840 NS_ERR("invalid badblocks.\n");
841 return -EINVAL;
842 }
843 offset = erase_block_no * ns->geom.secsz;
Artem Bityutskiy5942ddb2011-12-23 19:37:38 +0200844 if (mtd_block_markbad(mtd, offset)) {
Adrian Hunter514087e72007-03-19 12:47:45 +0200845 NS_ERR("invalid badblocks.\n");
846 return -EINVAL;
847 }
848 if (*w == ',')
849 w += 1;
850 } while (*w);
851 return 0;
852}
853
854static int parse_weakblocks(void)
855{
856 char *w;
857 int zero_ok;
858 unsigned int erase_block_no;
859 unsigned int max_erases;
860 struct weak_block *wb;
861
862 if (!weakblocks)
863 return 0;
864 w = weakblocks;
865 do {
866 zero_ok = (*w == '0' ? 1 : 0);
867 erase_block_no = simple_strtoul(w, &w, 0);
868 if (!zero_ok && !erase_block_no) {
869 NS_ERR("invalid weakblocks.\n");
870 return -EINVAL;
871 }
872 max_erases = 3;
873 if (*w == ':') {
874 w += 1;
875 max_erases = simple_strtoul(w, &w, 0);
876 }
877 if (*w == ',')
878 w += 1;
879 wb = kzalloc(sizeof(*wb), GFP_KERNEL);
880 if (!wb) {
881 NS_ERR("unable to allocate memory.\n");
882 return -ENOMEM;
883 }
884 wb->erase_block_no = erase_block_no;
885 wb->max_erases = max_erases;
886 list_add(&wb->list, &weak_blocks);
887 } while (*w);
888 return 0;
889}
890
891static int erase_error(unsigned int erase_block_no)
892{
893 struct weak_block *wb;
894
895 list_for_each_entry(wb, &weak_blocks, list)
896 if (wb->erase_block_no == erase_block_no) {
897 if (wb->erases_done >= wb->max_erases)
898 return 1;
899 wb->erases_done += 1;
900 return 0;
901 }
902 return 0;
903}
904
905static int parse_weakpages(void)
906{
907 char *w;
908 int zero_ok;
909 unsigned int page_no;
910 unsigned int max_writes;
911 struct weak_page *wp;
912
913 if (!weakpages)
914 return 0;
915 w = weakpages;
916 do {
917 zero_ok = (*w == '0' ? 1 : 0);
918 page_no = simple_strtoul(w, &w, 0);
919 if (!zero_ok && !page_no) {
920 NS_ERR("invalid weakpagess.\n");
921 return -EINVAL;
922 }
923 max_writes = 3;
924 if (*w == ':') {
925 w += 1;
926 max_writes = simple_strtoul(w, &w, 0);
927 }
928 if (*w == ',')
929 w += 1;
930 wp = kzalloc(sizeof(*wp), GFP_KERNEL);
931 if (!wp) {
932 NS_ERR("unable to allocate memory.\n");
933 return -ENOMEM;
934 }
935 wp->page_no = page_no;
936 wp->max_writes = max_writes;
937 list_add(&wp->list, &weak_pages);
938 } while (*w);
939 return 0;
940}
941
942static int write_error(unsigned int page_no)
943{
944 struct weak_page *wp;
945
946 list_for_each_entry(wp, &weak_pages, list)
947 if (wp->page_no == page_no) {
948 if (wp->writes_done >= wp->max_writes)
949 return 1;
950 wp->writes_done += 1;
951 return 0;
952 }
953 return 0;
954}
955
956static int parse_gravepages(void)
957{
958 char *g;
959 int zero_ok;
960 unsigned int page_no;
961 unsigned int max_reads;
962 struct grave_page *gp;
963
964 if (!gravepages)
965 return 0;
966 g = gravepages;
967 do {
968 zero_ok = (*g == '0' ? 1 : 0);
969 page_no = simple_strtoul(g, &g, 0);
970 if (!zero_ok && !page_no) {
971 NS_ERR("invalid gravepagess.\n");
972 return -EINVAL;
973 }
974 max_reads = 3;
975 if (*g == ':') {
976 g += 1;
977 max_reads = simple_strtoul(g, &g, 0);
978 }
979 if (*g == ',')
980 g += 1;
981 gp = kzalloc(sizeof(*gp), GFP_KERNEL);
982 if (!gp) {
983 NS_ERR("unable to allocate memory.\n");
984 return -ENOMEM;
985 }
986 gp->page_no = page_no;
987 gp->max_reads = max_reads;
988 list_add(&gp->list, &grave_pages);
989 } while (*g);
990 return 0;
991}
992
993static int read_error(unsigned int page_no)
994{
995 struct grave_page *gp;
996
997 list_for_each_entry(gp, &grave_pages, list)
998 if (gp->page_no == page_no) {
999 if (gp->reads_done >= gp->max_reads)
1000 return 1;
1001 gp->reads_done += 1;
1002 return 0;
1003 }
1004 return 0;
1005}
1006
1007static void free_lists(void)
1008{
1009 struct list_head *pos, *n;
1010 list_for_each_safe(pos, n, &weak_blocks) {
1011 list_del(pos);
1012 kfree(list_entry(pos, struct weak_block, list));
1013 }
1014 list_for_each_safe(pos, n, &weak_pages) {
1015 list_del(pos);
1016 kfree(list_entry(pos, struct weak_page, list));
1017 }
1018 list_for_each_safe(pos, n, &grave_pages) {
1019 list_del(pos);
1020 kfree(list_entry(pos, struct grave_page, list));
1021 }
Adrian Hunter57aa6b52007-03-19 12:40:41 +02001022 kfree(erase_block_wear);
1023}
1024
1025static int setup_wear_reporting(struct mtd_info *mtd)
1026{
1027 size_t mem;
1028
Herton Ronaldo Krzesinski596fd462012-05-16 16:21:52 -03001029 wear_eb_count = div_u64(mtd->size, mtd->erasesize);
Adrian Hunter57aa6b52007-03-19 12:40:41 +02001030 mem = wear_eb_count * sizeof(unsigned long);
1031 if (mem / sizeof(unsigned long) != wear_eb_count) {
1032 NS_ERR("Too many erase blocks for wear reporting\n");
1033 return -ENOMEM;
1034 }
1035 erase_block_wear = kzalloc(mem, GFP_KERNEL);
1036 if (!erase_block_wear) {
1037 NS_ERR("Too many erase blocks for wear reporting\n");
1038 return -ENOMEM;
1039 }
1040 return 0;
1041}
1042
1043static void update_wear(unsigned int erase_block_no)
1044{
Adrian Hunter57aa6b52007-03-19 12:40:41 +02001045 if (!erase_block_wear)
1046 return;
1047 total_wear += 1;
Ezequiel Garcia5346c272012-12-03 10:31:40 -03001048 /*
1049 * TODO: Notify this through a debugfs entry,
1050 * instead of showing an error message.
1051 */
Adrian Hunter57aa6b52007-03-19 12:40:41 +02001052 if (total_wear == 0)
1053 NS_ERR("Erase counter total overflow\n");
1054 erase_block_wear[erase_block_no] += 1;
1055 if (erase_block_wear[erase_block_no] == 0)
1056 NS_ERR("Erase counter overflow for erase block %u\n", erase_block_no);
Adrian Hunter514087e72007-03-19 12:47:45 +02001057}
1058
Linus Torvalds1da177e2005-04-16 15:20:36 -07001059/*
1060 * Returns the string representation of 'state' state.
1061 */
Vijay Kumara5602142006-10-14 21:33:34 +05301062static char *get_state_name(uint32_t state)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001063{
1064 switch (NS_STATE(state)) {
1065 case STATE_CMD_READ0:
1066 return "STATE_CMD_READ0";
1067 case STATE_CMD_READ1:
1068 return "STATE_CMD_READ1";
1069 case STATE_CMD_PAGEPROG:
1070 return "STATE_CMD_PAGEPROG";
1071 case STATE_CMD_READOOB:
1072 return "STATE_CMD_READOOB";
1073 case STATE_CMD_READSTART:
1074 return "STATE_CMD_READSTART";
1075 case STATE_CMD_ERASE1:
1076 return "STATE_CMD_ERASE1";
1077 case STATE_CMD_STATUS:
1078 return "STATE_CMD_STATUS";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001079 case STATE_CMD_SEQIN:
1080 return "STATE_CMD_SEQIN";
1081 case STATE_CMD_READID:
1082 return "STATE_CMD_READID";
1083 case STATE_CMD_ERASE2:
1084 return "STATE_CMD_ERASE2";
1085 case STATE_CMD_RESET:
1086 return "STATE_CMD_RESET";
Artem Bityutskiy74216be2008-07-30 11:18:42 +03001087 case STATE_CMD_RNDOUT:
1088 return "STATE_CMD_RNDOUT";
1089 case STATE_CMD_RNDOUTSTART:
1090 return "STATE_CMD_RNDOUTSTART";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001091 case STATE_ADDR_PAGE:
1092 return "STATE_ADDR_PAGE";
1093 case STATE_ADDR_SEC:
1094 return "STATE_ADDR_SEC";
1095 case STATE_ADDR_ZERO:
1096 return "STATE_ADDR_ZERO";
Artem Bityutskiy74216be2008-07-30 11:18:42 +03001097 case STATE_ADDR_COLUMN:
1098 return "STATE_ADDR_COLUMN";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001099 case STATE_DATAIN:
1100 return "STATE_DATAIN";
1101 case STATE_DATAOUT:
1102 return "STATE_DATAOUT";
1103 case STATE_DATAOUT_ID:
1104 return "STATE_DATAOUT_ID";
1105 case STATE_DATAOUT_STATUS:
1106 return "STATE_DATAOUT_STATUS";
1107 case STATE_DATAOUT_STATUS_M:
1108 return "STATE_DATAOUT_STATUS_M";
1109 case STATE_READY:
1110 return "STATE_READY";
1111 case STATE_UNKNOWN:
1112 return "STATE_UNKNOWN";
1113 }
1114
1115 NS_ERR("get_state_name: unknown state, BUG\n");
1116 return NULL;
1117}
1118
1119/*
1120 * Check if command is valid.
1121 *
1122 * RETURNS: 1 if wrong command, 0 if right.
1123 */
Vijay Kumara5602142006-10-14 21:33:34 +05301124static int check_command(int cmd)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001125{
1126 switch (cmd) {
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001127
Linus Torvalds1da177e2005-04-16 15:20:36 -07001128 case NAND_CMD_READ0:
Artem Bityutskiy74216be2008-07-30 11:18:42 +03001129 case NAND_CMD_READ1:
Linus Torvalds1da177e2005-04-16 15:20:36 -07001130 case NAND_CMD_READSTART:
1131 case NAND_CMD_PAGEPROG:
1132 case NAND_CMD_READOOB:
1133 case NAND_CMD_ERASE1:
1134 case NAND_CMD_STATUS:
1135 case NAND_CMD_SEQIN:
1136 case NAND_CMD_READID:
1137 case NAND_CMD_ERASE2:
1138 case NAND_CMD_RESET:
Artem Bityutskiy74216be2008-07-30 11:18:42 +03001139 case NAND_CMD_RNDOUT:
1140 case NAND_CMD_RNDOUTSTART:
Linus Torvalds1da177e2005-04-16 15:20:36 -07001141 return 0;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001142
Linus Torvalds1da177e2005-04-16 15:20:36 -07001143 default:
1144 return 1;
1145 }
1146}
1147
1148/*
1149 * Returns state after command is accepted by command number.
1150 */
Vijay Kumara5602142006-10-14 21:33:34 +05301151static uint32_t get_state_by_command(unsigned command)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001152{
1153 switch (command) {
1154 case NAND_CMD_READ0:
1155 return STATE_CMD_READ0;
1156 case NAND_CMD_READ1:
1157 return STATE_CMD_READ1;
1158 case NAND_CMD_PAGEPROG:
1159 return STATE_CMD_PAGEPROG;
1160 case NAND_CMD_READSTART:
1161 return STATE_CMD_READSTART;
1162 case NAND_CMD_READOOB:
1163 return STATE_CMD_READOOB;
1164 case NAND_CMD_ERASE1:
1165 return STATE_CMD_ERASE1;
1166 case NAND_CMD_STATUS:
1167 return STATE_CMD_STATUS;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001168 case NAND_CMD_SEQIN:
1169 return STATE_CMD_SEQIN;
1170 case NAND_CMD_READID:
1171 return STATE_CMD_READID;
1172 case NAND_CMD_ERASE2:
1173 return STATE_CMD_ERASE2;
1174 case NAND_CMD_RESET:
1175 return STATE_CMD_RESET;
Artem Bityutskiy74216be2008-07-30 11:18:42 +03001176 case NAND_CMD_RNDOUT:
1177 return STATE_CMD_RNDOUT;
1178 case NAND_CMD_RNDOUTSTART:
1179 return STATE_CMD_RNDOUTSTART;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001180 }
1181
1182 NS_ERR("get_state_by_command: unknown command, BUG\n");
1183 return 0;
1184}
1185
1186/*
1187 * Move an address byte to the correspondent internal register.
1188 */
Vijay Kumara5602142006-10-14 21:33:34 +05301189static inline void accept_addr_byte(struct nandsim *ns, u_char bt)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001190{
1191 uint byte = (uint)bt;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001192
Linus Torvalds1da177e2005-04-16 15:20:36 -07001193 if (ns->regs.count < (ns->geom.pgaddrbytes - ns->geom.secaddrbytes))
1194 ns->regs.column |= (byte << 8 * ns->regs.count);
1195 else {
1196 ns->regs.row |= (byte << 8 * (ns->regs.count -
1197 ns->geom.pgaddrbytes +
1198 ns->geom.secaddrbytes));
1199 }
1200
1201 return;
1202}
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001203
Linus Torvalds1da177e2005-04-16 15:20:36 -07001204/*
1205 * Switch to STATE_READY state.
1206 */
Vijay Kumara5602142006-10-14 21:33:34 +05301207static inline void switch_to_ready_state(struct nandsim *ns, u_char status)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001208{
1209 NS_DBG("switch_to_ready_state: switch to %s state\n", get_state_name(STATE_READY));
1210
1211 ns->state = STATE_READY;
1212 ns->nxstate = STATE_UNKNOWN;
1213 ns->op = NULL;
1214 ns->npstates = 0;
1215 ns->stateidx = 0;
1216 ns->regs.num = 0;
1217 ns->regs.count = 0;
1218 ns->regs.off = 0;
1219 ns->regs.row = 0;
1220 ns->regs.column = 0;
1221 ns->regs.status = status;
1222}
1223
1224/*
1225 * If the operation isn't known yet, try to find it in the global array
1226 * of supported operations.
1227 *
1228 * Operation can be unknown because of the following.
srimugunthandaf05ec2010-11-13 12:46:05 +02001229 * 1. New command was accepted and this is the first call to find the
Linus Torvalds1da177e2005-04-16 15:20:36 -07001230 * correspondent states chain. In this case ns->npstates = 0;
srimugunthandaf05ec2010-11-13 12:46:05 +02001231 * 2. There are several operations which begin with the same command(s)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001232 * (for example program from the second half and read from the
1233 * second half operations both begin with the READ1 command). In this
1234 * case the ns->pstates[] array contains previous states.
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001235 *
Linus Torvalds1da177e2005-04-16 15:20:36 -07001236 * Thus, the function tries to find operation containing the following
1237 * states (if the 'flag' parameter is 0):
1238 * ns->pstates[0], ... ns->pstates[ns->npstates], ns->state
1239 *
1240 * If (one and only one) matching operation is found, it is accepted (
1241 * ns->ops, ns->state, ns->nxstate are initialized, ns->npstate is
1242 * zeroed).
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001243 *
srimugunthandaf05ec2010-11-13 12:46:05 +02001244 * If there are several matches, the current state is pushed to the
Linus Torvalds1da177e2005-04-16 15:20:36 -07001245 * ns->pstates.
1246 *
1247 * The operation can be unknown only while commands are input to the chip.
1248 * As soon as address command is accepted, the operation must be known.
1249 * In such situation the function is called with 'flag' != 0, and the
1250 * operation is searched using the following pattern:
1251 * ns->pstates[0], ... ns->pstates[ns->npstates], <address input>
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001252 *
srimugunthandaf05ec2010-11-13 12:46:05 +02001253 * It is supposed that this pattern must either match one operation or
Linus Torvalds1da177e2005-04-16 15:20:36 -07001254 * none. There can't be ambiguity in that case.
1255 *
srimugunthandaf05ec2010-11-13 12:46:05 +02001256 * If no matches found, the function does the following:
Linus Torvalds1da177e2005-04-16 15:20:36 -07001257 * 1. if there are saved states present, try to ignore them and search
1258 * again only using the last command. If nothing was found, switch
1259 * to the STATE_READY state.
1260 * 2. if there are no saved states, switch to the STATE_READY state.
1261 *
1262 * RETURNS: -2 - no matched operations found.
1263 * -1 - several matches.
1264 * 0 - operation is found.
1265 */
Vijay Kumara5602142006-10-14 21:33:34 +05301266static int find_operation(struct nandsim *ns, uint32_t flag)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001267{
1268 int opsfound = 0;
1269 int i, j, idx = 0;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001270
Linus Torvalds1da177e2005-04-16 15:20:36 -07001271 for (i = 0; i < NS_OPER_NUM; i++) {
1272
1273 int found = 1;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001274
Linus Torvalds1da177e2005-04-16 15:20:36 -07001275 if (!(ns->options & ops[i].reqopts))
1276 /* Ignore operations we can't perform */
1277 continue;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001278
Linus Torvalds1da177e2005-04-16 15:20:36 -07001279 if (flag) {
1280 if (!(ops[i].states[ns->npstates] & STATE_ADDR_MASK))
1281 continue;
1282 } else {
1283 if (NS_STATE(ns->state) != NS_STATE(ops[i].states[ns->npstates]))
1284 continue;
1285 }
1286
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001287 for (j = 0; j < ns->npstates; j++)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001288 if (NS_STATE(ops[i].states[j]) != NS_STATE(ns->pstates[j])
1289 && (ns->options & ops[idx].reqopts)) {
1290 found = 0;
1291 break;
1292 }
1293
1294 if (found) {
1295 idx = i;
1296 opsfound += 1;
1297 }
1298 }
1299
1300 if (opsfound == 1) {
1301 /* Exact match */
1302 ns->op = &ops[idx].states[0];
1303 if (flag) {
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001304 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001305 * In this case the find_operation function was
1306 * called when address has just began input. But it isn't
1307 * yet fully input and the current state must
1308 * not be one of STATE_ADDR_*, but the STATE_ADDR_*
1309 * state must be the next state (ns->nxstate).
1310 */
1311 ns->stateidx = ns->npstates - 1;
1312 } else {
1313 ns->stateidx = ns->npstates;
1314 }
1315 ns->npstates = 0;
1316 ns->state = ns->op[ns->stateidx];
1317 ns->nxstate = ns->op[ns->stateidx + 1];
1318 NS_DBG("find_operation: operation found, index: %d, state: %s, nxstate %s\n",
1319 idx, get_state_name(ns->state), get_state_name(ns->nxstate));
1320 return 0;
1321 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001322
Linus Torvalds1da177e2005-04-16 15:20:36 -07001323 if (opsfound == 0) {
1324 /* Nothing was found. Try to ignore previous commands (if any) and search again */
1325 if (ns->npstates != 0) {
1326 NS_DBG("find_operation: no operation found, try again with state %s\n",
1327 get_state_name(ns->state));
1328 ns->npstates = 0;
1329 return find_operation(ns, 0);
1330
1331 }
1332 NS_DBG("find_operation: no operations found\n");
1333 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
1334 return -2;
1335 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001336
Linus Torvalds1da177e2005-04-16 15:20:36 -07001337 if (flag) {
1338 /* This shouldn't happen */
1339 NS_DBG("find_operation: BUG, operation must be known if address is input\n");
1340 return -2;
1341 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001342
Linus Torvalds1da177e2005-04-16 15:20:36 -07001343 NS_DBG("find_operation: there is still ambiguity\n");
1344
1345 ns->pstates[ns->npstates++] = ns->state;
1346
1347 return -1;
1348}
1349
Adrian Huntera9fc8992008-11-12 16:06:07 +02001350static void put_pages(struct nandsim *ns)
1351{
1352 int i;
1353
1354 for (i = 0; i < ns->held_cnt; i++)
1355 page_cache_release(ns->held_pages[i]);
1356}
1357
1358/* Get page cache pages in advance to provide NOFS memory allocation */
1359static int get_pages(struct nandsim *ns, struct file *file, size_t count, loff_t pos)
1360{
1361 pgoff_t index, start_index, end_index;
1362 struct page *page;
1363 struct address_space *mapping = file->f_mapping;
1364
1365 start_index = pos >> PAGE_CACHE_SHIFT;
1366 end_index = (pos + count - 1) >> PAGE_CACHE_SHIFT;
1367 if (end_index - start_index + 1 > NS_MAX_HELD_PAGES)
1368 return -EINVAL;
1369 ns->held_cnt = 0;
1370 for (index = start_index; index <= end_index; index++) {
1371 page = find_get_page(mapping, index);
1372 if (page == NULL) {
1373 page = find_or_create_page(mapping, index, GFP_NOFS);
1374 if (page == NULL) {
1375 write_inode_now(mapping->host, 1);
1376 page = find_or_create_page(mapping, index, GFP_NOFS);
1377 }
1378 if (page == NULL) {
1379 put_pages(ns);
1380 return -ENOMEM;
1381 }
1382 unlock_page(page);
1383 }
1384 ns->held_pages[ns->held_cnt++] = page;
1385 }
1386 return 0;
1387}
1388
1389static int set_memalloc(void)
1390{
1391 if (current->flags & PF_MEMALLOC)
1392 return 0;
1393 current->flags |= PF_MEMALLOC;
1394 return 1;
1395}
1396
1397static void clear_memalloc(int memalloc)
1398{
1399 if (memalloc)
1400 current->flags &= ~PF_MEMALLOC;
1401}
1402
Al Viro7bb307e2013-02-23 14:51:48 -05001403static ssize_t read_file(struct nandsim *ns, struct file *file, void *buf, size_t count, loff_t pos)
Adrian Huntera9fc8992008-11-12 16:06:07 +02001404{
Adrian Huntera9fc8992008-11-12 16:06:07 +02001405 ssize_t tx;
1406 int err, memalloc;
1407
Al Viro7bb307e2013-02-23 14:51:48 -05001408 err = get_pages(ns, file, count, pos);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001409 if (err)
1410 return err;
Adrian Huntera9fc8992008-11-12 16:06:07 +02001411 memalloc = set_memalloc();
Al Viro7bb307e2013-02-23 14:51:48 -05001412 tx = kernel_read(file, pos, buf, count);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001413 clear_memalloc(memalloc);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001414 put_pages(ns);
1415 return tx;
1416}
1417
Al Viro7bb307e2013-02-23 14:51:48 -05001418static ssize_t write_file(struct nandsim *ns, struct file *file, void *buf, size_t count, loff_t pos)
Adrian Huntera9fc8992008-11-12 16:06:07 +02001419{
Adrian Huntera9fc8992008-11-12 16:06:07 +02001420 ssize_t tx;
1421 int err, memalloc;
1422
Al Viro7bb307e2013-02-23 14:51:48 -05001423 err = get_pages(ns, file, count, pos);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001424 if (err)
1425 return err;
Adrian Huntera9fc8992008-11-12 16:06:07 +02001426 memalloc = set_memalloc();
Al Viro7bb307e2013-02-23 14:51:48 -05001427 tx = kernel_write(file, buf, count, pos);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001428 clear_memalloc(memalloc);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001429 put_pages(ns);
1430 return tx;
1431}
1432
Linus Torvalds1da177e2005-04-16 15:20:36 -07001433/*
Vijay Kumard086d432006-10-08 22:02:31 +05301434 * Returns a pointer to the current page.
1435 */
1436static inline union ns_mem *NS_GET_PAGE(struct nandsim *ns)
1437{
1438 return &(ns->pages[ns->regs.row]);
1439}
1440
1441/*
1442 * Retuns a pointer to the current byte, within the current page.
1443 */
1444static inline u_char *NS_PAGE_BYTE_OFF(struct nandsim *ns)
1445{
1446 return NS_GET_PAGE(ns)->byte + ns->regs.column + ns->regs.off;
1447}
1448
Adrian Huntera9fc8992008-11-12 16:06:07 +02001449int do_read_error(struct nandsim *ns, int num)
1450{
1451 unsigned int page_no = ns->regs.row;
1452
1453 if (read_error(page_no)) {
Akinobu Mita7e45bf82012-12-17 16:04:32 -08001454 prandom_bytes(ns->buf.byte, num);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001455 NS_WARN("simulating read error in page %u\n", page_no);
1456 return 1;
1457 }
1458 return 0;
1459}
1460
1461void do_bit_flips(struct nandsim *ns, int num)
1462{
Akinobu Mitaaca662a2013-01-03 21:19:13 +09001463 if (bitflips && prandom_u32() < (1 << 22)) {
Adrian Huntera9fc8992008-11-12 16:06:07 +02001464 int flips = 1;
1465 if (bitflips > 1)
Akinobu Mitaaca662a2013-01-03 21:19:13 +09001466 flips = (prandom_u32() % (int) bitflips) + 1;
Adrian Huntera9fc8992008-11-12 16:06:07 +02001467 while (flips--) {
Akinobu Mitaaca662a2013-01-03 21:19:13 +09001468 int pos = prandom_u32() % (num * 8);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001469 ns->buf.byte[pos / 8] ^= (1 << (pos % 8));
1470 NS_WARN("read_page: flipping bit %d in page %d "
1471 "reading from %d ecc: corrected=%u failed=%u\n",
1472 pos, ns->regs.row, ns->regs.column + ns->regs.off,
1473 nsmtd->ecc_stats.corrected, nsmtd->ecc_stats.failed);
1474 }
1475 }
1476}
1477
Vijay Kumard086d432006-10-08 22:02:31 +05301478/*
1479 * Fill the NAND buffer with data read from the specified page.
1480 */
1481static void read_page(struct nandsim *ns, int num)
1482{
1483 union ns_mem *mypage;
1484
Adrian Huntera9fc8992008-11-12 16:06:07 +02001485 if (ns->cfile) {
1486 if (!ns->pages_written[ns->regs.row]) {
1487 NS_DBG("read_page: page %d not written\n", ns->regs.row);
1488 memset(ns->buf.byte, 0xFF, num);
1489 } else {
1490 loff_t pos;
1491 ssize_t tx;
1492
1493 NS_DBG("read_page: page %d written, reading from %d\n",
1494 ns->regs.row, ns->regs.column + ns->regs.off);
1495 if (do_read_error(ns, num))
1496 return;
1497 pos = (loff_t)ns->regs.row * ns->geom.pgszoob + ns->regs.column + ns->regs.off;
Al Viro7bb307e2013-02-23 14:51:48 -05001498 tx = read_file(ns, ns->cfile, ns->buf.byte, num, pos);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001499 if (tx != num) {
1500 NS_ERR("read_page: read error for page %d ret %ld\n", ns->regs.row, (long)tx);
1501 return;
1502 }
1503 do_bit_flips(ns, num);
1504 }
1505 return;
1506 }
1507
Vijay Kumard086d432006-10-08 22:02:31 +05301508 mypage = NS_GET_PAGE(ns);
1509 if (mypage->byte == NULL) {
1510 NS_DBG("read_page: page %d not allocated\n", ns->regs.row);
1511 memset(ns->buf.byte, 0xFF, num);
1512 } else {
1513 NS_DBG("read_page: page %d allocated, reading from %d\n",
1514 ns->regs.row, ns->regs.column + ns->regs.off);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001515 if (do_read_error(ns, num))
Adrian Hunter514087e72007-03-19 12:47:45 +02001516 return;
Vijay Kumard086d432006-10-08 22:02:31 +05301517 memcpy(ns->buf.byte, NS_PAGE_BYTE_OFF(ns), num);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001518 do_bit_flips(ns, num);
Vijay Kumard086d432006-10-08 22:02:31 +05301519 }
1520}
1521
1522/*
1523 * Erase all pages in the specified sector.
1524 */
1525static void erase_sector(struct nandsim *ns)
1526{
1527 union ns_mem *mypage;
1528 int i;
1529
Adrian Huntera9fc8992008-11-12 16:06:07 +02001530 if (ns->cfile) {
1531 for (i = 0; i < ns->geom.pgsec; i++)
1532 if (ns->pages_written[ns->regs.row + i]) {
1533 NS_DBG("erase_sector: freeing page %d\n", ns->regs.row + i);
1534 ns->pages_written[ns->regs.row + i] = 0;
1535 }
1536 return;
1537 }
1538
Vijay Kumard086d432006-10-08 22:02:31 +05301539 mypage = NS_GET_PAGE(ns);
1540 for (i = 0; i < ns->geom.pgsec; i++) {
1541 if (mypage->byte != NULL) {
1542 NS_DBG("erase_sector: freeing page %d\n", ns->regs.row+i);
Alexey Korolev8a4c2492008-11-13 13:40:38 +00001543 kmem_cache_free(ns->nand_pages_slab, mypage->byte);
Vijay Kumard086d432006-10-08 22:02:31 +05301544 mypage->byte = NULL;
1545 }
1546 mypage++;
1547 }
1548}
1549
1550/*
1551 * Program the specified page with the contents from the NAND buffer.
1552 */
1553static int prog_page(struct nandsim *ns, int num)
1554{
Artem Bityutskiy82810b7b62006-10-20 11:23:56 +03001555 int i;
Vijay Kumard086d432006-10-08 22:02:31 +05301556 union ns_mem *mypage;
1557 u_char *pg_off;
1558
Adrian Huntera9fc8992008-11-12 16:06:07 +02001559 if (ns->cfile) {
Al Viro7bb307e2013-02-23 14:51:48 -05001560 loff_t off;
Adrian Huntera9fc8992008-11-12 16:06:07 +02001561 ssize_t tx;
1562 int all;
1563
1564 NS_DBG("prog_page: writing page %d\n", ns->regs.row);
1565 pg_off = ns->file_buf + ns->regs.column + ns->regs.off;
1566 off = (loff_t)ns->regs.row * ns->geom.pgszoob + ns->regs.column + ns->regs.off;
1567 if (!ns->pages_written[ns->regs.row]) {
1568 all = 1;
1569 memset(ns->file_buf, 0xff, ns->geom.pgszoob);
1570 } else {
1571 all = 0;
Al Viro7bb307e2013-02-23 14:51:48 -05001572 tx = read_file(ns, ns->cfile, pg_off, num, off);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001573 if (tx != num) {
1574 NS_ERR("prog_page: read error for page %d ret %ld\n", ns->regs.row, (long)tx);
1575 return -1;
1576 }
1577 }
1578 for (i = 0; i < num; i++)
1579 pg_off[i] &= ns->buf.byte[i];
1580 if (all) {
Al Viro7bb307e2013-02-23 14:51:48 -05001581 loff_t pos = (loff_t)ns->regs.row * ns->geom.pgszoob;
1582 tx = write_file(ns, ns->cfile, ns->file_buf, ns->geom.pgszoob, pos);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001583 if (tx != ns->geom.pgszoob) {
1584 NS_ERR("prog_page: write error for page %d ret %ld\n", ns->regs.row, (long)tx);
1585 return -1;
1586 }
1587 ns->pages_written[ns->regs.row] = 1;
1588 } else {
Al Viro7bb307e2013-02-23 14:51:48 -05001589 tx = write_file(ns, ns->cfile, pg_off, num, off);
Adrian Huntera9fc8992008-11-12 16:06:07 +02001590 if (tx != num) {
1591 NS_ERR("prog_page: write error for page %d ret %ld\n", ns->regs.row, (long)tx);
1592 return -1;
1593 }
1594 }
1595 return 0;
1596 }
1597
Vijay Kumard086d432006-10-08 22:02:31 +05301598 mypage = NS_GET_PAGE(ns);
1599 if (mypage->byte == NULL) {
1600 NS_DBG("prog_page: allocating page %d\n", ns->regs.row);
Artem Bityutskiy98b830d2007-08-28 20:33:32 +03001601 /*
1602 * We allocate memory with GFP_NOFS because a flash FS may
1603 * utilize this. If it is holding an FS lock, then gets here,
Alexey Korolev8a4c2492008-11-13 13:40:38 +00001604 * then kernel memory alloc runs writeback which goes to the FS
1605 * again and deadlocks. This was seen in practice.
Artem Bityutskiy98b830d2007-08-28 20:33:32 +03001606 */
Alexey Korolev8a4c2492008-11-13 13:40:38 +00001607 mypage->byte = kmem_cache_alloc(ns->nand_pages_slab, GFP_NOFS);
Vijay Kumard086d432006-10-08 22:02:31 +05301608 if (mypage->byte == NULL) {
1609 NS_ERR("prog_page: error allocating memory for page %d\n", ns->regs.row);
1610 return -1;
1611 }
1612 memset(mypage->byte, 0xFF, ns->geom.pgszoob);
1613 }
1614
1615 pg_off = NS_PAGE_BYTE_OFF(ns);
Artem Bityutskiy82810b7b62006-10-20 11:23:56 +03001616 for (i = 0; i < num; i++)
1617 pg_off[i] &= ns->buf.byte[i];
Vijay Kumard086d432006-10-08 22:02:31 +05301618
1619 return 0;
1620}
1621
1622/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001623 * If state has any action bit, perform this action.
1624 *
1625 * RETURNS: 0 if success, -1 if error.
1626 */
Vijay Kumara5602142006-10-14 21:33:34 +05301627static int do_state_action(struct nandsim *ns, uint32_t action)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001628{
Vijay Kumard086d432006-10-08 22:02:31 +05301629 int num;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001630 int busdiv = ns->busw == 8 ? 1 : 2;
Adrian Hunter514087e72007-03-19 12:47:45 +02001631 unsigned int erase_block_no, page_no;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001632
1633 action &= ACTION_MASK;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001634
Linus Torvalds1da177e2005-04-16 15:20:36 -07001635 /* Check that page address input is correct */
1636 if (action != ACTION_SECERASE && ns->regs.row >= ns->geom.pgnum) {
1637 NS_WARN("do_state_action: wrong page number (%#x)\n", ns->regs.row);
1638 return -1;
1639 }
1640
1641 switch (action) {
1642
1643 case ACTION_CPY:
1644 /*
1645 * Copy page data to the internal buffer.
1646 */
1647
1648 /* Column shouldn't be very large */
1649 if (ns->regs.column >= (ns->geom.pgszoob - ns->regs.off)) {
1650 NS_ERR("do_state_action: column number is too large\n");
1651 break;
1652 }
1653 num = ns->geom.pgszoob - ns->regs.off - ns->regs.column;
Vijay Kumard086d432006-10-08 22:02:31 +05301654 read_page(ns, num);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001655
1656 NS_DBG("do_state_action: (ACTION_CPY:) copy %d bytes to int buf, raw offset %d\n",
1657 num, NS_RAW_OFFSET(ns) + ns->regs.off);
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001658
Linus Torvalds1da177e2005-04-16 15:20:36 -07001659 if (ns->regs.off == 0)
1660 NS_LOG("read page %d\n", ns->regs.row);
1661 else if (ns->regs.off < ns->geom.pgsz)
1662 NS_LOG("read page %d (second half)\n", ns->regs.row);
1663 else
1664 NS_LOG("read OOB of page %d\n", ns->regs.row);
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001665
Linus Torvalds1da177e2005-04-16 15:20:36 -07001666 NS_UDELAY(access_delay);
1667 NS_UDELAY(input_cycle * ns->geom.pgsz / 1000 / busdiv);
1668
1669 break;
1670
1671 case ACTION_SECERASE:
1672 /*
1673 * Erase sector.
1674 */
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001675
Linus Torvalds1da177e2005-04-16 15:20:36 -07001676 if (ns->lines.wp) {
1677 NS_ERR("do_state_action: device is write-protected, ignore sector erase\n");
1678 return -1;
1679 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001680
Linus Torvalds1da177e2005-04-16 15:20:36 -07001681 if (ns->regs.row >= ns->geom.pgnum - ns->geom.pgsec
1682 || (ns->regs.row & ~(ns->geom.secsz - 1))) {
1683 NS_ERR("do_state_action: wrong sector address (%#x)\n", ns->regs.row);
1684 return -1;
1685 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001686
Linus Torvalds1da177e2005-04-16 15:20:36 -07001687 ns->regs.row = (ns->regs.row <<
1688 8 * (ns->geom.pgaddrbytes - ns->geom.secaddrbytes)) | ns->regs.column;
1689 ns->regs.column = 0;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001690
Adrian Hunter514087e72007-03-19 12:47:45 +02001691 erase_block_no = ns->regs.row >> (ns->geom.secshift - ns->geom.pgshift);
1692
Linus Torvalds1da177e2005-04-16 15:20:36 -07001693 NS_DBG("do_state_action: erase sector at address %#x, off = %d\n",
1694 ns->regs.row, NS_RAW_OFFSET(ns));
Adrian Hunter514087e72007-03-19 12:47:45 +02001695 NS_LOG("erase sector %u\n", erase_block_no);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001696
Vijay Kumard086d432006-10-08 22:02:31 +05301697 erase_sector(ns);
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001698
Linus Torvalds1da177e2005-04-16 15:20:36 -07001699 NS_MDELAY(erase_delay);
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001700
Adrian Hunter57aa6b52007-03-19 12:40:41 +02001701 if (erase_block_wear)
1702 update_wear(erase_block_no);
1703
Adrian Hunter514087e72007-03-19 12:47:45 +02001704 if (erase_error(erase_block_no)) {
1705 NS_WARN("simulating erase failure in erase block %u\n", erase_block_no);
1706 return -1;
1707 }
1708
Linus Torvalds1da177e2005-04-16 15:20:36 -07001709 break;
1710
1711 case ACTION_PRGPAGE:
1712 /*
srimugunthandaf05ec2010-11-13 12:46:05 +02001713 * Program page - move internal buffer data to the page.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001714 */
1715
1716 if (ns->lines.wp) {
1717 NS_WARN("do_state_action: device is write-protected, programm\n");
1718 return -1;
1719 }
1720
1721 num = ns->geom.pgszoob - ns->regs.off - ns->regs.column;
1722 if (num != ns->regs.count) {
1723 NS_ERR("do_state_action: too few bytes were input (%d instead of %d)\n",
1724 ns->regs.count, num);
1725 return -1;
1726 }
1727
Vijay Kumard086d432006-10-08 22:02:31 +05301728 if (prog_page(ns, num) == -1)
1729 return -1;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001730
Adrian Hunter514087e72007-03-19 12:47:45 +02001731 page_no = ns->regs.row;
1732
Linus Torvalds1da177e2005-04-16 15:20:36 -07001733 NS_DBG("do_state_action: copy %d bytes from int buf to (%#x, %#x), raw off = %d\n",
1734 num, ns->regs.row, ns->regs.column, NS_RAW_OFFSET(ns) + ns->regs.off);
1735 NS_LOG("programm page %d\n", ns->regs.row);
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001736
Linus Torvalds1da177e2005-04-16 15:20:36 -07001737 NS_UDELAY(programm_delay);
1738 NS_UDELAY(output_cycle * ns->geom.pgsz / 1000 / busdiv);
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001739
Adrian Hunter514087e72007-03-19 12:47:45 +02001740 if (write_error(page_no)) {
1741 NS_WARN("simulating write failure in page %u\n", page_no);
1742 return -1;
1743 }
1744
Linus Torvalds1da177e2005-04-16 15:20:36 -07001745 break;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001746
Linus Torvalds1da177e2005-04-16 15:20:36 -07001747 case ACTION_ZEROOFF:
1748 NS_DBG("do_state_action: set internal offset to 0\n");
1749 ns->regs.off = 0;
1750 break;
1751
1752 case ACTION_HALFOFF:
1753 if (!(ns->options & OPT_PAGE512_8BIT)) {
1754 NS_ERR("do_state_action: BUG! can't skip half of page for non-512"
1755 "byte page size 8x chips\n");
1756 return -1;
1757 }
1758 NS_DBG("do_state_action: set internal offset to %d\n", ns->geom.pgsz/2);
1759 ns->regs.off = ns->geom.pgsz/2;
1760 break;
1761
1762 case ACTION_OOBOFF:
1763 NS_DBG("do_state_action: set internal offset to %d\n", ns->geom.pgsz);
1764 ns->regs.off = ns->geom.pgsz;
1765 break;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001766
Linus Torvalds1da177e2005-04-16 15:20:36 -07001767 default:
1768 NS_DBG("do_state_action: BUG! unknown action\n");
1769 }
1770
1771 return 0;
1772}
1773
1774/*
1775 * Switch simulator's state.
1776 */
Vijay Kumara5602142006-10-14 21:33:34 +05301777static void switch_state(struct nandsim *ns)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001778{
1779 if (ns->op) {
1780 /*
1781 * The current operation have already been identified.
1782 * Just follow the states chain.
1783 */
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001784
Linus Torvalds1da177e2005-04-16 15:20:36 -07001785 ns->stateidx += 1;
1786 ns->state = ns->nxstate;
1787 ns->nxstate = ns->op[ns->stateidx + 1];
1788
1789 NS_DBG("switch_state: operation is known, switch to the next state, "
1790 "state: %s, nxstate: %s\n",
1791 get_state_name(ns->state), get_state_name(ns->nxstate));
1792
1793 /* See, whether we need to do some action */
1794 if ((ns->state & ACTION_MASK) && do_state_action(ns, ns->state) < 0) {
1795 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
1796 return;
1797 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001798
Linus Torvalds1da177e2005-04-16 15:20:36 -07001799 } else {
1800 /*
1801 * We don't yet know which operation we perform.
1802 * Try to identify it.
1803 */
1804
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001805 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001806 * The only event causing the switch_state function to
1807 * be called with yet unknown operation is new command.
1808 */
1809 ns->state = get_state_by_command(ns->regs.command);
1810
1811 NS_DBG("switch_state: operation is unknown, try to find it\n");
1812
1813 if (find_operation(ns, 0) != 0)
1814 return;
1815
1816 if ((ns->state & ACTION_MASK) && do_state_action(ns, ns->state) < 0) {
1817 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
1818 return;
1819 }
1820 }
1821
1822 /* For 16x devices column means the page offset in words */
1823 if ((ns->nxstate & STATE_ADDR_MASK) && ns->busw == 16) {
1824 NS_DBG("switch_state: double the column number for 16x device\n");
1825 ns->regs.column <<= 1;
1826 }
1827
1828 if (NS_STATE(ns->nxstate) == STATE_READY) {
1829 /*
1830 * The current state is the last. Return to STATE_READY
1831 */
1832
1833 u_char status = NS_STATUS_OK(ns);
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001834
Linus Torvalds1da177e2005-04-16 15:20:36 -07001835 /* In case of data states, see if all bytes were input/output */
1836 if ((ns->state & (STATE_DATAIN_MASK | STATE_DATAOUT_MASK))
1837 && ns->regs.count != ns->regs.num) {
1838 NS_WARN("switch_state: not all bytes were processed, %d left\n",
1839 ns->regs.num - ns->regs.count);
1840 status = NS_STATUS_FAILED(ns);
1841 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001842
Linus Torvalds1da177e2005-04-16 15:20:36 -07001843 NS_DBG("switch_state: operation complete, switch to STATE_READY state\n");
1844
1845 switch_to_ready_state(ns, status);
1846
1847 return;
1848 } else if (ns->nxstate & (STATE_DATAIN_MASK | STATE_DATAOUT_MASK)) {
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001849 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001850 * If the next state is data input/output, switch to it now
1851 */
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001852
Linus Torvalds1da177e2005-04-16 15:20:36 -07001853 ns->state = ns->nxstate;
1854 ns->nxstate = ns->op[++ns->stateidx + 1];
1855 ns->regs.num = ns->regs.count = 0;
1856
1857 NS_DBG("switch_state: the next state is data I/O, switch, "
1858 "state: %s, nxstate: %s\n",
1859 get_state_name(ns->state), get_state_name(ns->nxstate));
1860
1861 /*
1862 * Set the internal register to the count of bytes which
1863 * are expected to be input or output
1864 */
1865 switch (NS_STATE(ns->state)) {
1866 case STATE_DATAIN:
1867 case STATE_DATAOUT:
1868 ns->regs.num = ns->geom.pgszoob - ns->regs.off - ns->regs.column;
1869 break;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001870
Linus Torvalds1da177e2005-04-16 15:20:36 -07001871 case STATE_DATAOUT_ID:
1872 ns->regs.num = ns->geom.idbytes;
1873 break;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001874
Linus Torvalds1da177e2005-04-16 15:20:36 -07001875 case STATE_DATAOUT_STATUS:
1876 case STATE_DATAOUT_STATUS_M:
1877 ns->regs.count = ns->regs.num = 0;
1878 break;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001879
Linus Torvalds1da177e2005-04-16 15:20:36 -07001880 default:
1881 NS_ERR("switch_state: BUG! unknown data state\n");
1882 }
1883
1884 } else if (ns->nxstate & STATE_ADDR_MASK) {
1885 /*
1886 * If the next state is address input, set the internal
1887 * register to the number of expected address bytes
1888 */
1889
1890 ns->regs.count = 0;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001891
Linus Torvalds1da177e2005-04-16 15:20:36 -07001892 switch (NS_STATE(ns->nxstate)) {
1893 case STATE_ADDR_PAGE:
1894 ns->regs.num = ns->geom.pgaddrbytes;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001895
Linus Torvalds1da177e2005-04-16 15:20:36 -07001896 break;
1897 case STATE_ADDR_SEC:
1898 ns->regs.num = ns->geom.secaddrbytes;
1899 break;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001900
Linus Torvalds1da177e2005-04-16 15:20:36 -07001901 case STATE_ADDR_ZERO:
1902 ns->regs.num = 1;
1903 break;
1904
Artem Bityutskiy74216be2008-07-30 11:18:42 +03001905 case STATE_ADDR_COLUMN:
1906 /* Column address is always 2 bytes */
1907 ns->regs.num = ns->geom.pgaddrbytes - ns->geom.secaddrbytes;
1908 break;
1909
Linus Torvalds1da177e2005-04-16 15:20:36 -07001910 default:
1911 NS_ERR("switch_state: BUG! unknown address state\n");
1912 }
1913 } else {
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001914 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -07001915 * Just reset internal counters.
1916 */
1917
1918 ns->regs.num = 0;
1919 ns->regs.count = 0;
1920 }
1921}
1922
Vijay Kumara5602142006-10-14 21:33:34 +05301923static u_char ns_nand_read_byte(struct mtd_info *mtd)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001924{
Kulikov Vasiliy7b8516b2010-06-29 14:15:17 +04001925 struct nandsim *ns = ((struct nand_chip *)mtd->priv)->priv;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001926 u_char outb = 0x00;
1927
1928 /* Sanity and correctness checks */
1929 if (!ns->lines.ce) {
1930 NS_ERR("read_byte: chip is disabled, return %#x\n", (uint)outb);
1931 return outb;
1932 }
1933 if (ns->lines.ale || ns->lines.cle) {
1934 NS_ERR("read_byte: ALE or CLE pin is high, return %#x\n", (uint)outb);
1935 return outb;
1936 }
1937 if (!(ns->state & STATE_DATAOUT_MASK)) {
1938 NS_WARN("read_byte: unexpected data output cycle, state is %s "
1939 "return %#x\n", get_state_name(ns->state), (uint)outb);
1940 return outb;
1941 }
1942
1943 /* Status register may be read as many times as it is wanted */
1944 if (NS_STATE(ns->state) == STATE_DATAOUT_STATUS) {
1945 NS_DBG("read_byte: return %#x status\n", ns->regs.status);
1946 return ns->regs.status;
1947 }
1948
1949 /* Check if there is any data in the internal buffer which may be read */
1950 if (ns->regs.count == ns->regs.num) {
1951 NS_WARN("read_byte: no more data to output, return %#x\n", (uint)outb);
1952 return outb;
1953 }
1954
1955 switch (NS_STATE(ns->state)) {
1956 case STATE_DATAOUT:
1957 if (ns->busw == 8) {
1958 outb = ns->buf.byte[ns->regs.count];
1959 ns->regs.count += 1;
1960 } else {
1961 outb = (u_char)cpu_to_le16(ns->buf.word[ns->regs.count >> 1]);
1962 ns->regs.count += 2;
1963 }
1964 break;
1965 case STATE_DATAOUT_ID:
1966 NS_DBG("read_byte: read ID byte %d, total = %d\n", ns->regs.count, ns->regs.num);
1967 outb = ns->ids[ns->regs.count];
1968 ns->regs.count += 1;
1969 break;
1970 default:
1971 BUG();
1972 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001973
Linus Torvalds1da177e2005-04-16 15:20:36 -07001974 if (ns->regs.count == ns->regs.num) {
1975 NS_DBG("read_byte: all bytes were read\n");
1976
Brian Norris831d3162012-05-01 17:12:53 -07001977 if (NS_STATE(ns->nxstate) == STATE_READY)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001978 switch_state(ns);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001979 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001980
Linus Torvalds1da177e2005-04-16 15:20:36 -07001981 return outb;
1982}
1983
Vijay Kumara5602142006-10-14 21:33:34 +05301984static void ns_nand_write_byte(struct mtd_info *mtd, u_char byte)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001985{
Kulikov Vasiliy7b8516b2010-06-29 14:15:17 +04001986 struct nandsim *ns = ((struct nand_chip *)mtd->priv)->priv;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001987
Linus Torvalds1da177e2005-04-16 15:20:36 -07001988 /* Sanity and correctness checks */
1989 if (!ns->lines.ce) {
1990 NS_ERR("write_byte: chip is disabled, ignore write\n");
1991 return;
1992 }
1993 if (ns->lines.ale && ns->lines.cle) {
1994 NS_ERR("write_byte: ALE and CLE pins are high simultaneously, ignore write\n");
1995 return;
1996 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00001997
Linus Torvalds1da177e2005-04-16 15:20:36 -07001998 if (ns->lines.cle == 1) {
1999 /*
2000 * The byte written is a command.
2001 */
2002
2003 if (byte == NAND_CMD_RESET) {
2004 NS_LOG("reset chip\n");
2005 switch_to_ready_state(ns, NS_STATUS_OK(ns));
2006 return;
2007 }
2008
Artem Bityutskiy74216be2008-07-30 11:18:42 +03002009 /* Check that the command byte is correct */
2010 if (check_command(byte)) {
2011 NS_ERR("write_byte: unknown command %#x\n", (uint)byte);
2012 return;
2013 }
2014
Linus Torvalds1da177e2005-04-16 15:20:36 -07002015 if (NS_STATE(ns->state) == STATE_DATAOUT_STATUS
2016 || NS_STATE(ns->state) == STATE_DATAOUT_STATUS_M
Artem Bityutskiy74216be2008-07-30 11:18:42 +03002017 || NS_STATE(ns->state) == STATE_DATAOUT) {
2018 int row = ns->regs.row;
2019
Linus Torvalds1da177e2005-04-16 15:20:36 -07002020 switch_state(ns);
Artem Bityutskiy74216be2008-07-30 11:18:42 +03002021 if (byte == NAND_CMD_RNDOUT)
2022 ns->regs.row = row;
2023 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002024
2025 /* Check if chip is expecting command */
2026 if (NS_STATE(ns->nxstate) != STATE_UNKNOWN && !(ns->nxstate & STATE_CMD_MASK)) {
Adrian Hunter9359ea462008-11-12 16:06:40 +02002027 /* Do not warn if only 2 id bytes are read */
2028 if (!(ns->regs.command == NAND_CMD_READID &&
2029 NS_STATE(ns->state) == STATE_DATAOUT_ID && ns->regs.count == 2)) {
2030 /*
2031 * We are in situation when something else (not command)
2032 * was expected but command was input. In this case ignore
2033 * previous command(s)/state(s) and accept the last one.
2034 */
2035 NS_WARN("write_byte: command (%#x) wasn't expected, expected state is %s, "
2036 "ignore previous states\n", (uint)byte, get_state_name(ns->nxstate));
2037 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002038 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
2039 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002040
Linus Torvalds1da177e2005-04-16 15:20:36 -07002041 NS_DBG("command byte corresponding to %s state accepted\n",
2042 get_state_name(get_state_by_command(byte)));
2043 ns->regs.command = byte;
2044 switch_state(ns);
2045
2046 } else if (ns->lines.ale == 1) {
2047 /*
2048 * The byte written is an address.
2049 */
2050
2051 if (NS_STATE(ns->nxstate) == STATE_UNKNOWN) {
2052
2053 NS_DBG("write_byte: operation isn't known yet, identify it\n");
2054
2055 if (find_operation(ns, 1) < 0)
2056 return;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002057
Linus Torvalds1da177e2005-04-16 15:20:36 -07002058 if ((ns->state & ACTION_MASK) && do_state_action(ns, ns->state) < 0) {
2059 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
2060 return;
2061 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002062
Linus Torvalds1da177e2005-04-16 15:20:36 -07002063 ns->regs.count = 0;
2064 switch (NS_STATE(ns->nxstate)) {
2065 case STATE_ADDR_PAGE:
2066 ns->regs.num = ns->geom.pgaddrbytes;
2067 break;
2068 case STATE_ADDR_SEC:
2069 ns->regs.num = ns->geom.secaddrbytes;
2070 break;
2071 case STATE_ADDR_ZERO:
2072 ns->regs.num = 1;
2073 break;
2074 default:
2075 BUG();
2076 }
2077 }
2078
2079 /* Check that chip is expecting address */
2080 if (!(ns->nxstate & STATE_ADDR_MASK)) {
2081 NS_ERR("write_byte: address (%#x) isn't expected, expected state is %s, "
2082 "switch to STATE_READY\n", (uint)byte, get_state_name(ns->nxstate));
2083 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
2084 return;
2085 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002086
Linus Torvalds1da177e2005-04-16 15:20:36 -07002087 /* Check if this is expected byte */
2088 if (ns->regs.count == ns->regs.num) {
2089 NS_ERR("write_byte: no more address bytes expected\n");
2090 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
2091 return;
2092 }
2093
2094 accept_addr_byte(ns, byte);
2095
2096 ns->regs.count += 1;
2097
2098 NS_DBG("write_byte: address byte %#x was accepted (%d bytes input, %d expected)\n",
2099 (uint)byte, ns->regs.count, ns->regs.num);
2100
2101 if (ns->regs.count == ns->regs.num) {
2102 NS_DBG("address (%#x, %#x) is accepted\n", ns->regs.row, ns->regs.column);
2103 switch_state(ns);
2104 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002105
Linus Torvalds1da177e2005-04-16 15:20:36 -07002106 } else {
2107 /*
2108 * The byte written is an input data.
2109 */
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002110
Linus Torvalds1da177e2005-04-16 15:20:36 -07002111 /* Check that chip is expecting data input */
2112 if (!(ns->state & STATE_DATAIN_MASK)) {
2113 NS_ERR("write_byte: data input (%#x) isn't expected, state is %s, "
2114 "switch to %s\n", (uint)byte,
2115 get_state_name(ns->state), get_state_name(STATE_READY));
2116 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
2117 return;
2118 }
2119
2120 /* Check if this is expected byte */
2121 if (ns->regs.count == ns->regs.num) {
2122 NS_WARN("write_byte: %u input bytes has already been accepted, ignore write\n",
2123 ns->regs.num);
2124 return;
2125 }
2126
2127 if (ns->busw == 8) {
2128 ns->buf.byte[ns->regs.count] = byte;
2129 ns->regs.count += 1;
2130 } else {
2131 ns->buf.word[ns->regs.count >> 1] = cpu_to_le16((uint16_t)byte);
2132 ns->regs.count += 2;
2133 }
2134 }
2135
2136 return;
2137}
2138
Thomas Gleixner7abd3ef2006-05-23 23:25:53 +02002139static void ns_hwcontrol(struct mtd_info *mtd, int cmd, unsigned int bitmask)
2140{
2141 struct nandsim *ns = ((struct nand_chip *)mtd->priv)->priv;
2142
2143 ns->lines.cle = bitmask & NAND_CLE ? 1 : 0;
2144 ns->lines.ale = bitmask & NAND_ALE ? 1 : 0;
2145 ns->lines.ce = bitmask & NAND_NCE ? 1 : 0;
2146
2147 if (cmd != NAND_CMD_NONE)
2148 ns_nand_write_byte(mtd, cmd);
2149}
2150
Vijay Kumara5602142006-10-14 21:33:34 +05302151static int ns_device_ready(struct mtd_info *mtd)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002152{
2153 NS_DBG("device_ready\n");
2154 return 1;
2155}
2156
Vijay Kumara5602142006-10-14 21:33:34 +05302157static uint16_t ns_nand_read_word(struct mtd_info *mtd)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002158{
2159 struct nand_chip *chip = (struct nand_chip *)mtd->priv;
2160
2161 NS_DBG("read_word\n");
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002162
Linus Torvalds1da177e2005-04-16 15:20:36 -07002163 return chip->read_byte(mtd) | (chip->read_byte(mtd) << 8);
2164}
2165
Vijay Kumara5602142006-10-14 21:33:34 +05302166static void ns_nand_write_buf(struct mtd_info *mtd, const u_char *buf, int len)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002167{
Kulikov Vasiliy7b8516b2010-06-29 14:15:17 +04002168 struct nandsim *ns = ((struct nand_chip *)mtd->priv)->priv;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002169
2170 /* Check that chip is expecting data input */
2171 if (!(ns->state & STATE_DATAIN_MASK)) {
2172 NS_ERR("write_buf: data input isn't expected, state is %s, "
2173 "switch to STATE_READY\n", get_state_name(ns->state));
2174 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
2175 return;
2176 }
2177
2178 /* Check if these are expected bytes */
2179 if (ns->regs.count + len > ns->regs.num) {
2180 NS_ERR("write_buf: too many input bytes\n");
2181 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
2182 return;
2183 }
2184
2185 memcpy(ns->buf.byte + ns->regs.count, buf, len);
2186 ns->regs.count += len;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002187
Linus Torvalds1da177e2005-04-16 15:20:36 -07002188 if (ns->regs.count == ns->regs.num) {
2189 NS_DBG("write_buf: %d bytes were written\n", ns->regs.count);
2190 }
2191}
2192
Vijay Kumara5602142006-10-14 21:33:34 +05302193static void ns_nand_read_buf(struct mtd_info *mtd, u_char *buf, int len)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002194{
Kulikov Vasiliy7b8516b2010-06-29 14:15:17 +04002195 struct nandsim *ns = ((struct nand_chip *)mtd->priv)->priv;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002196
2197 /* Sanity and correctness checks */
2198 if (!ns->lines.ce) {
2199 NS_ERR("read_buf: chip is disabled\n");
2200 return;
2201 }
2202 if (ns->lines.ale || ns->lines.cle) {
2203 NS_ERR("read_buf: ALE or CLE pin is high\n");
2204 return;
2205 }
2206 if (!(ns->state & STATE_DATAOUT_MASK)) {
2207 NS_WARN("read_buf: unexpected data output cycle, current state is %s\n",
2208 get_state_name(ns->state));
2209 return;
2210 }
2211
2212 if (NS_STATE(ns->state) != STATE_DATAOUT) {
2213 int i;
2214
2215 for (i = 0; i < len; i++)
2216 buf[i] = ((struct nand_chip *)mtd->priv)->read_byte(mtd);
2217
2218 return;
2219 }
2220
2221 /* Check if these are expected bytes */
2222 if (ns->regs.count + len > ns->regs.num) {
2223 NS_ERR("read_buf: too many bytes to read\n");
2224 switch_to_ready_state(ns, NS_STATUS_FAILED(ns));
2225 return;
2226 }
2227
2228 memcpy(buf, ns->buf.byte + ns->regs.count, len);
2229 ns->regs.count += len;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002230
Linus Torvalds1da177e2005-04-16 15:20:36 -07002231 if (ns->regs.count == ns->regs.num) {
Brian Norris831d3162012-05-01 17:12:53 -07002232 if (NS_STATE(ns->nxstate) == STATE_READY)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002233 switch_state(ns);
2234 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002235
Linus Torvalds1da177e2005-04-16 15:20:36 -07002236 return;
2237}
2238
Linus Torvalds1da177e2005-04-16 15:20:36 -07002239/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002240 * Module initialization function
2241 */
Adrian Bunk2b9175c2005-11-29 14:49:38 +00002242static int __init ns_init_module(void)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002243{
2244 struct nand_chip *chip;
2245 struct nandsim *nand;
Adrian Hunter2b77a0e2007-03-19 12:46:43 +02002246 int retval = -ENOMEM, i;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002247
2248 if (bus_width != 8 && bus_width != 16) {
2249 NS_ERR("wrong bus width (%d), use only 8 or 16\n", bus_width);
2250 return -EINVAL;
2251 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002252
Linus Torvalds1da177e2005-04-16 15:20:36 -07002253 /* Allocate and initialize mtd_info, nand_chip and nandsim structures */
Burman Yan95b93a02006-11-15 21:10:29 +02002254 nsmtd = kzalloc(sizeof(struct mtd_info) + sizeof(struct nand_chip)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002255 + sizeof(struct nandsim), GFP_KERNEL);
2256 if (!nsmtd) {
2257 NS_ERR("unable to allocate core structures.\n");
2258 return -ENOMEM;
2259 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002260 chip = (struct nand_chip *)(nsmtd + 1);
2261 nsmtd->priv = (void *)chip;
2262 nand = (struct nandsim *)(chip + 1);
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002263 chip->priv = (void *)nand;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002264
2265 /*
2266 * Register simulator's callbacks.
2267 */
Thomas Gleixner7abd3ef2006-05-23 23:25:53 +02002268 chip->cmd_ctrl = ns_hwcontrol;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002269 chip->read_byte = ns_nand_read_byte;
2270 chip->dev_ready = ns_device_ready;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002271 chip->write_buf = ns_nand_write_buf;
2272 chip->read_buf = ns_nand_read_buf;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002273 chip->read_word = ns_nand_read_word;
Thomas Gleixner6dfc6d22006-05-23 12:00:46 +02002274 chip->ecc.mode = NAND_ECC_SOFT;
Adrian Huntera5ac8ae2007-03-19 12:49:11 +02002275 /* The NAND_SKIP_BBTSCAN option is necessary for 'overridesize' */
2276 /* and 'badblocks' parameters to work */
Artem B. Bityuckiy51502282005-03-19 15:33:59 +00002277 chip->options |= NAND_SKIP_BBTSCAN;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002278
Sebastian Andrzej Siewiorce85b792010-09-29 19:43:54 +02002279 switch (bbt) {
2280 case 2:
Brian Norrisa40f7342011-05-31 16:31:22 -07002281 chip->bbt_options |= NAND_BBT_NO_OOB;
Sebastian Andrzej Siewiorce85b792010-09-29 19:43:54 +02002282 case 1:
Brian Norrisbb9ebd42011-05-31 16:31:23 -07002283 chip->bbt_options |= NAND_BBT_USE_FLASH;
Sebastian Andrzej Siewiorce85b792010-09-29 19:43:54 +02002284 case 0:
2285 break;
2286 default:
2287 NS_ERR("bbt has to be 0..2\n");
2288 retval = -EINVAL;
2289 goto error;
2290 }
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002291 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002292 * Perform minimum nandsim structure initialization to handle
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002293 * the initial ID read command correctly
Linus Torvalds1da177e2005-04-16 15:20:36 -07002294 */
2295 if (third_id_byte != 0xFF || fourth_id_byte != 0xFF)
2296 nand->geom.idbytes = 4;
2297 else
2298 nand->geom.idbytes = 2;
2299 nand->regs.status = NS_STATUS_OK(nand);
2300 nand->nxstate = STATE_UNKNOWN;
2301 nand->options |= OPT_PAGE256; /* temporary value */
2302 nand->ids[0] = first_id_byte;
2303 nand->ids[1] = second_id_byte;
2304 nand->ids[2] = third_id_byte;
2305 nand->ids[3] = fourth_id_byte;
2306 if (bus_width == 16) {
2307 nand->busw = 16;
2308 chip->options |= NAND_BUSWIDTH_16;
2309 }
2310
David Woodhouse552d9202006-05-14 01:20:46 +01002311 nsmtd->owner = THIS_MODULE;
2312
Adrian Hunter514087e72007-03-19 12:47:45 +02002313 if ((retval = parse_weakblocks()) != 0)
2314 goto error;
2315
2316 if ((retval = parse_weakpages()) != 0)
2317 goto error;
2318
2319 if ((retval = parse_gravepages()) != 0)
2320 goto error;
2321
Ivan Djelicfc2ff592011-03-11 11:05:34 +01002322 retval = nand_scan_ident(nsmtd, 1, NULL);
2323 if (retval) {
2324 NS_ERR("cannot scan NAND Simulator device\n");
2325 if (retval > 0)
2326 retval = -ENXIO;
2327 goto error;
2328 }
2329
2330 if (bch) {
2331 unsigned int eccsteps, eccbytes;
2332 if (!mtd_nand_has_bch()) {
2333 NS_ERR("BCH ECC support is disabled\n");
2334 retval = -EINVAL;
2335 goto error;
2336 }
2337 /* use 512-byte ecc blocks */
2338 eccsteps = nsmtd->writesize/512;
2339 eccbytes = (bch*13+7)/8;
2340 /* do not bother supporting small page devices */
2341 if ((nsmtd->oobsize < 64) || !eccsteps) {
2342 NS_ERR("bch not available on small page devices\n");
2343 retval = -EINVAL;
2344 goto error;
2345 }
2346 if ((eccbytes*eccsteps+2) > nsmtd->oobsize) {
2347 NS_ERR("invalid bch value %u\n", bch);
2348 retval = -EINVAL;
2349 goto error;
2350 }
2351 chip->ecc.mode = NAND_ECC_SOFT_BCH;
2352 chip->ecc.size = 512;
2353 chip->ecc.bytes = eccbytes;
2354 NS_INFO("using %u-bit/%u bytes BCH ECC\n", bch, chip->ecc.size);
2355 }
2356
2357 retval = nand_scan_tail(nsmtd);
2358 if (retval) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002359 NS_ERR("can't register NAND Simulator\n");
2360 if (retval > 0)
2361 retval = -ENXIO;
2362 goto error;
2363 }
2364
Adrian Huntera5ac8ae2007-03-19 12:49:11 +02002365 if (overridesize) {
David Woodhouse0f07a0b2008-12-10 14:01:46 +00002366 uint64_t new_size = (uint64_t)nsmtd->erasesize << overridesize;
Adrian Huntera5ac8ae2007-03-19 12:49:11 +02002367 if (new_size >> overridesize != nsmtd->erasesize) {
2368 NS_ERR("overridesize is too big\n");
Richard Genoudbb0a13a2012-09-12 14:26:26 +02002369 retval = -EINVAL;
Adrian Huntera5ac8ae2007-03-19 12:49:11 +02002370 goto err_exit;
2371 }
2372 /* N.B. This relies on nand_scan not doing anything with the size before we change it */
2373 nsmtd->size = new_size;
2374 chip->chipsize = new_size;
Adrian Hunter6eda7a52008-05-30 15:56:26 +03002375 chip->chip_shift = ffs(nsmtd->erasesize) + overridesize - 1;
Adrian Hunter07293b22008-05-30 15:56:23 +03002376 chip->pagemask = (chip->chipsize >> chip->page_shift) - 1;
Adrian Huntera5ac8ae2007-03-19 12:49:11 +02002377 }
2378
Adrian Hunter57aa6b52007-03-19 12:40:41 +02002379 if ((retval = setup_wear_reporting(nsmtd)) != 0)
2380 goto err_exit;
2381
Ezequiel Garcia5346c272012-12-03 10:31:40 -03002382 if ((retval = nandsim_debugfs_create(nand)) != 0)
2383 goto err_exit;
2384
Adrian Hunter2b77a0e2007-03-19 12:46:43 +02002385 if ((retval = init_nandsim(nsmtd)) != 0)
2386 goto err_exit;
Thomas Gleixner61b03bd2005-11-07 11:15:49 +00002387
Sebastian Andrzej Siewiorce85b792010-09-29 19:43:54 +02002388 if ((retval = nand_default_bbt(nsmtd)) != 0)
Adrian Hunter514087e72007-03-19 12:47:45 +02002389 goto err_exit;
2390
Sebastian Andrzej Siewiorce85b792010-09-29 19:43:54 +02002391 if ((retval = parse_badblocks(nand, nsmtd)) != 0)
Adrian Hunter2b77a0e2007-03-19 12:46:43 +02002392 goto err_exit;
Artem B. Bityuckiy51502282005-03-19 15:33:59 +00002393
Adrian Hunter2b77a0e2007-03-19 12:46:43 +02002394 /* Register NAND partitions */
Jamie Ilesee0e87b2011-05-23 10:23:40 +01002395 retval = mtd_device_register(nsmtd, &nand->partitions[0],
2396 nand->nbparts);
2397 if (retval != 0)
Adrian Hunter2b77a0e2007-03-19 12:46:43 +02002398 goto err_exit;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002399
2400 return 0;
2401
Adrian Hunter2b77a0e2007-03-19 12:46:43 +02002402err_exit:
2403 free_nandsim(nand);
2404 nand_release(nsmtd);
2405 for (i = 0;i < ARRAY_SIZE(nand->partitions); ++i)
2406 kfree(nand->partitions[i].name);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002407error:
2408 kfree(nsmtd);
Adrian Hunter514087e72007-03-19 12:47:45 +02002409 free_lists();
Linus Torvalds1da177e2005-04-16 15:20:36 -07002410
2411 return retval;
2412}
2413
2414module_init(ns_init_module);
2415
2416/*
2417 * Module clean-up function
2418 */
2419static void __exit ns_cleanup_module(void)
2420{
Kulikov Vasiliy7b8516b2010-06-29 14:15:17 +04002421 struct nandsim *ns = ((struct nand_chip *)nsmtd->priv)->priv;
Adrian Hunter2b77a0e2007-03-19 12:46:43 +02002422 int i;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002423
Ezequiel Garcia5346c272012-12-03 10:31:40 -03002424 nandsim_debugfs_remove(ns);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002425 free_nandsim(ns); /* Free nandsim private resources */
Adrian Hunter2b77a0e2007-03-19 12:46:43 +02002426 nand_release(nsmtd); /* Unregister driver */
2427 for (i = 0;i < ARRAY_SIZE(ns->partitions); ++i)
2428 kfree(ns->partitions[i].name);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002429 kfree(nsmtd); /* Free other structures */
Adrian Hunter514087e72007-03-19 12:47:45 +02002430 free_lists();
Linus Torvalds1da177e2005-04-16 15:20:36 -07002431}
2432
2433module_exit(ns_cleanup_module);
2434
2435MODULE_LICENSE ("GPL");
2436MODULE_AUTHOR ("Artem B. Bityuckiy");
2437MODULE_DESCRIPTION ("The NAND flash simulator");