blob: 11a22e021d09f03a8e76302edef8518c400879e7 [file] [log] [blame]
Tom Rini10e47792018-05-06 17:58:06 -04001// SPDX-License-Identifier: GPL-2.0+
Christian Hitz55f7bca2011-10-12 09:31:59 +02002/*
3 * This file provides ECC correction for more than 1 bit per block of data,
4 * using binary BCH codes. It relies on the generic BCH library lib/bch.c.
5 *
6 * Copyright © 2011 Ivan Djelic <ivan.djelic@parrot.com>
7 *
Christian Hitz55f7bca2011-10-12 09:31:59 +02008 */
9
10#include <common.h>
Simon Glassd66c5f72020-02-03 07:36:15 -070011#include <dm/devres.h>
Christian Hitz55f7bca2011-10-12 09:31:59 +020012/*#include <asm/io.h>*/
13#include <linux/types.h>
14
15#include <linux/bitops.h>
16#include <linux/mtd/mtd.h>
Masahiro Yamada2b7a8732017-11-30 13:45:24 +090017#include <linux/mtd/rawnand.h>
Christian Hitz55f7bca2011-10-12 09:31:59 +020018#include <linux/mtd/nand_bch.h>
19#include <linux/bch.h>
20#include <malloc.h>
21
22/**
23 * struct nand_bch_control - private NAND BCH control structure
24 * @bch: BCH control structure
25 * @ecclayout: private ecc layout for this BCH configuration
26 * @errloc: error location array
27 * @eccmask: XOR ecc mask, allows erased pages to be decoded as valid
28 */
29struct nand_bch_control {
30 struct bch_control *bch;
31 struct nand_ecclayout ecclayout;
32 unsigned int *errloc;
33 unsigned char *eccmask;
34};
35
36/**
37 * nand_bch_calculate_ecc - [NAND Interface] Calculate ECC for data block
38 * @mtd: MTD block structure
39 * @buf: input buffer with raw data
40 * @code: output buffer with ECC
41 */
42int nand_bch_calculate_ecc(struct mtd_info *mtd, const unsigned char *buf,
43 unsigned char *code)
44{
Scott Wood17fed142016-05-30 13:57:56 -050045 const struct nand_chip *chip = mtd_to_nand(mtd);
Christian Hitz55f7bca2011-10-12 09:31:59 +020046 struct nand_bch_control *nbc = chip->ecc.priv;
47 unsigned int i;
48
49 memset(code, 0, chip->ecc.bytes);
50 encode_bch(nbc->bch, buf, chip->ecc.size, code);
51
52 /* apply mask so that an erased page is a valid codeword */
53 for (i = 0; i < chip->ecc.bytes; i++)
54 code[i] ^= nbc->eccmask[i];
55
56 return 0;
57}
58
59/**
60 * nand_bch_correct_data - [NAND Interface] Detect and correct bit error(s)
61 * @mtd: MTD block structure
62 * @buf: raw data read from the chip
63 * @read_ecc: ECC from the chip
64 * @calc_ecc: the ECC calculated from raw data
65 *
66 * Detect and correct bit errors for a data byte block
67 */
68int nand_bch_correct_data(struct mtd_info *mtd, unsigned char *buf,
69 unsigned char *read_ecc, unsigned char *calc_ecc)
70{
Scott Wood17fed142016-05-30 13:57:56 -050071 const struct nand_chip *chip = mtd_to_nand(mtd);
Christian Hitz55f7bca2011-10-12 09:31:59 +020072 struct nand_bch_control *nbc = chip->ecc.priv;
73 unsigned int *errloc = nbc->errloc;
74 int i, count;
75
76 count = decode_bch(nbc->bch, NULL, chip->ecc.size, read_ecc, calc_ecc,
77 NULL, errloc);
78 if (count > 0) {
79 for (i = 0; i < count; i++) {
80 if (errloc[i] < (chip->ecc.size*8))
81 /* error is located in data, correct it */
82 buf[errloc[i] >> 3] ^= (1 << (errloc[i] & 7));
83 /* else error in ecc, no action needed */
84
Masahiro Yamadaf8a5d512017-10-18 00:10:48 +090085 pr_debug("%s: corrected bitflip %u\n",
86 __func__, errloc[i]);
Christian Hitz55f7bca2011-10-12 09:31:59 +020087 }
88 } else if (count < 0) {
89 printk(KERN_ERR "ecc unrecoverable error\n");
Scott Wood52ab7ce2016-05-30 13:57:58 -050090 count = -EBADMSG;
Christian Hitz55f7bca2011-10-12 09:31:59 +020091 }
92 return count;
93}
94
95/**
96 * nand_bch_init - [NAND Interface] Initialize NAND BCH error correction
97 * @mtd: MTD block structure
Christian Hitz55f7bca2011-10-12 09:31:59 +020098 *
99 * Returns:
100 * a pointer to a new NAND BCH control structure, or NULL upon failure
101 *
102 * Initialize NAND BCH error correction. Parameters @eccsize and @eccbytes
103 * are used to compute BCH parameters m (Galois field order) and t (error
104 * correction capability). @eccbytes should be equal to the number of bytes
105 * required to store m*t bits, where m is such that 2^m-1 > @eccsize*8.
106 *
107 * Example: to configure 4 bit correction per 512 bytes, you should pass
108 * @eccsize = 512 (thus, m=13 is the smallest integer such that 2^m-1 > 512*8)
109 * @eccbytes = 7 (7 bytes are required to store m*t = 13*4 = 52 bits)
110 */
Scott Wood52ab7ce2016-05-30 13:57:58 -0500111struct nand_bch_control *nand_bch_init(struct mtd_info *mtd)
Christian Hitz55f7bca2011-10-12 09:31:59 +0200112{
Scott Wood52ab7ce2016-05-30 13:57:58 -0500113 struct nand_chip *nand = mtd_to_nand(mtd);
Christian Hitz55f7bca2011-10-12 09:31:59 +0200114 unsigned int m, t, eccsteps, i;
Scott Wood52ab7ce2016-05-30 13:57:58 -0500115 struct nand_ecclayout *layout = nand->ecc.layout;
Christian Hitz55f7bca2011-10-12 09:31:59 +0200116 struct nand_bch_control *nbc = NULL;
117 unsigned char *erased_page;
Scott Wood52ab7ce2016-05-30 13:57:58 -0500118 unsigned int eccsize = nand->ecc.size;
119 unsigned int eccbytes = nand->ecc.bytes;
120 unsigned int eccstrength = nand->ecc.strength;
121
122 if (!eccbytes && eccstrength) {
123 eccbytes = DIV_ROUND_UP(eccstrength * fls(8 * eccsize), 8);
124 nand->ecc.bytes = eccbytes;
125 }
Christian Hitz55f7bca2011-10-12 09:31:59 +0200126
127 if (!eccsize || !eccbytes) {
128 printk(KERN_WARNING "ecc parameters not supplied\n");
129 goto fail;
130 }
131
132 m = fls(1+8*eccsize);
133 t = (eccbytes*8)/m;
134
135 nbc = kzalloc(sizeof(*nbc), GFP_KERNEL);
136 if (!nbc)
137 goto fail;
138
139 nbc->bch = init_bch(m, t, 0);
140 if (!nbc->bch)
141 goto fail;
142
143 /* verify that eccbytes has the expected value */
144 if (nbc->bch->ecc_bytes != eccbytes) {
145 printk(KERN_WARNING "invalid eccbytes %u, should be %u\n",
146 eccbytes, nbc->bch->ecc_bytes);
147 goto fail;
148 }
149
150 eccsteps = mtd->writesize/eccsize;
151
152 /* if no ecc placement scheme was provided, build one */
Scott Wood52ab7ce2016-05-30 13:57:58 -0500153 if (!layout) {
Christian Hitz55f7bca2011-10-12 09:31:59 +0200154
155 /* handle large page devices only */
156 if (mtd->oobsize < 64) {
157 printk(KERN_WARNING "must provide an oob scheme for "
158 "oobsize %d\n", mtd->oobsize);
159 goto fail;
160 }
161
162 layout = &nbc->ecclayout;
163 layout->eccbytes = eccsteps*eccbytes;
164
165 /* reserve 2 bytes for bad block marker */
166 if (layout->eccbytes+2 > mtd->oobsize) {
167 printk(KERN_WARNING "no suitable oob scheme available "
168 "for oobsize %d eccbytes %u\n", mtd->oobsize,
169 eccbytes);
170 goto fail;
171 }
172 /* put ecc bytes at oob tail */
173 for (i = 0; i < layout->eccbytes; i++)
174 layout->eccpos[i] = mtd->oobsize-layout->eccbytes+i;
175
176 layout->oobfree[0].offset = 2;
177 layout->oobfree[0].length = mtd->oobsize-2-layout->eccbytes;
178
Scott Wood52ab7ce2016-05-30 13:57:58 -0500179 nand->ecc.layout = layout;
Christian Hitz55f7bca2011-10-12 09:31:59 +0200180 }
181
182 /* sanity checks */
183 if (8*(eccsize+eccbytes) >= (1 << m)) {
184 printk(KERN_WARNING "eccsize %u is too large\n", eccsize);
185 goto fail;
186 }
Scott Wood52ab7ce2016-05-30 13:57:58 -0500187 if (layout->eccbytes != (eccsteps*eccbytes)) {
Christian Hitz55f7bca2011-10-12 09:31:59 +0200188 printk(KERN_WARNING "invalid ecc layout\n");
189 goto fail;
190 }
191
192 nbc->eccmask = kmalloc(eccbytes, GFP_KERNEL);
193 nbc->errloc = kmalloc(t*sizeof(*nbc->errloc), GFP_KERNEL);
194 if (!nbc->eccmask || !nbc->errloc)
195 goto fail;
196 /*
197 * compute and store the inverted ecc of an erased ecc block
198 */
199 erased_page = kmalloc(eccsize, GFP_KERNEL);
200 if (!erased_page)
201 goto fail;
202
203 memset(erased_page, 0xff, eccsize);
204 memset(nbc->eccmask, 0, eccbytes);
205 encode_bch(nbc->bch, erased_page, eccsize, nbc->eccmask);
206 kfree(erased_page);
207
208 for (i = 0; i < eccbytes; i++)
209 nbc->eccmask[i] ^= 0xff;
210
Scott Wood52ab7ce2016-05-30 13:57:58 -0500211 if (!eccstrength)
212 nand->ecc.strength = (eccbytes * 8) / fls(8 * eccsize);
213
Christian Hitz55f7bca2011-10-12 09:31:59 +0200214 return nbc;
215fail:
216 nand_bch_free(nbc);
217 return NULL;
218}
219
220/**
221 * nand_bch_free - [NAND Interface] Release NAND BCH ECC resources
222 * @nbc: NAND BCH control structure
223 */
224void nand_bch_free(struct nand_bch_control *nbc)
225{
226 if (nbc) {
227 free_bch(nbc->bch);
228 kfree(nbc->errloc);
229 kfree(nbc->eccmask);
230 kfree(nbc);
231 }
232}