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Stefan Roese887e2ec2006-09-07 11:51:23 +02001/*
2 * Overview:
3 * Platform independend driver for NDFC (NanD Flash Controller)
4 * integrated into EP440 cores
5 *
6 * (C) Copyright 2006
7 * Stefan Roese, DENX Software Engineering, sr@denx.de.
8 *
9 * Based on original work by
10 * Thomas Gleixner
11 * Copyright 2006 IBM
12 *
13 * See file CREDITS for list of people who contributed to this
14 * project.
15 *
16 * This program is free software; you can redistribute it and/or
17 * modify it under the terms of the GNU General Public License as
18 * published by the Free Software Foundation; either version 2 of
19 * the License, or (at your option) any later version.
20 *
21 * This program is distributed in the hope that it will be useful,
22 * but WITHOUT ANY WARRANTY; without even the implied warranty of
23 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
24 * GNU General Public License for more details.
25 *
26 * You should have received a copy of the GNU General Public License
27 * along with this program; if not, write to the Free Software
28 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
29 * MA 02111-1307 USA
30 */
31
32#include <common.h>
33
Stefan Roese2d658962006-09-07 13:09:53 +020034#if (CONFIG_COMMANDS & CFG_CMD_NAND) && !defined(CFG_NAND_LEGACY) && \
35 (defined(CONFIG_440EP) || defined(CONFIG_440GR) || \
Stefan Roese6f3dfc12007-05-22 12:46:10 +020036 defined(CONFIG_440EPX) || defined(CONFIG_440GRX) || \
37 defined(CONFIG_405EZ))
Stefan Roese887e2ec2006-09-07 11:51:23 +020038
39#include <nand.h>
40#include <linux/mtd/ndfc.h>
41#include <asm/processor.h>
Stefan Roese6f3dfc12007-05-22 12:46:10 +020042#include <ppc4xx.h>
Stefan Roese887e2ec2006-09-07 11:51:23 +020043
44static u8 hwctl = 0;
45
46static void ndfc_hwcontrol(struct mtd_info *mtdinfo, int cmd)
47{
48 switch (cmd) {
49 case NAND_CTL_SETCLE:
50 hwctl |= 0x1;
51 break;
52
53 case NAND_CTL_CLRCLE:
54 hwctl &= ~0x1;
55 break;
56
57 case NAND_CTL_SETALE:
58 hwctl |= 0x2;
59 break;
60
61 case NAND_CTL_CLRALE:
62 hwctl &= ~0x2;
63 break;
64 }
65}
66
67static void ndfc_write_byte(struct mtd_info *mtdinfo, u_char byte)
68{
Wolfgang Denk511d0c72006-10-09 00:42:01 +020069 struct nand_chip *this = mtdinfo->priv;
Stefan Roese43a2b0e2006-10-20 14:28:52 +020070 ulong base = (ulong) this->IO_ADDR_W & 0xfffffffc;
Stefan Roese887e2ec2006-09-07 11:51:23 +020071
72 if (hwctl & 0x1)
73 out8(base + NDFC_CMD, byte);
74 else if (hwctl & 0x2)
75 out8(base + NDFC_ALE, byte);
76 else
77 out8(base + NDFC_DATA, byte);
78}
79
80static u_char ndfc_read_byte(struct mtd_info *mtdinfo)
81{
Wolfgang Denk511d0c72006-10-09 00:42:01 +020082 struct nand_chip *this = mtdinfo->priv;
Stefan Roese43a2b0e2006-10-20 14:28:52 +020083 ulong base = (ulong) this->IO_ADDR_W & 0xfffffffc;
Stefan Roese887e2ec2006-09-07 11:51:23 +020084
85 return (in8(base + NDFC_DATA));
86}
87
88static int ndfc_dev_ready(struct mtd_info *mtdinfo)
89{
Wolfgang Denk511d0c72006-10-09 00:42:01 +020090 struct nand_chip *this = mtdinfo->priv;
Stefan Roese43a2b0e2006-10-20 14:28:52 +020091 ulong base = (ulong) this->IO_ADDR_W & 0xfffffffc;
Stefan Roese887e2ec2006-09-07 11:51:23 +020092
93 while (!(in32(base + NDFC_STAT) & NDFC_STAT_IS_READY))
94 ;
95
96 return 1;
97}
98
99#ifndef CONFIG_NAND_SPL
100/*
101 * Don't use these speedup functions in NAND boot image, since the image
102 * has to fit into 4kByte.
103 */
104
105/*
106 * Speedups for buffer read/write/verify
107 *
108 * NDFC allows 32bit read/write of data. So we can speed up the buffer
109 * functions. No further checking, as nand_base will always read/write
110 * page aligned.
111 */
112static void ndfc_read_buf(struct mtd_info *mtdinfo, uint8_t *buf, int len)
113{
Wolfgang Denk511d0c72006-10-09 00:42:01 +0200114 struct nand_chip *this = mtdinfo->priv;
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200115 ulong base = (ulong) this->IO_ADDR_W & 0xfffffffc;
Stefan Roese887e2ec2006-09-07 11:51:23 +0200116 uint32_t *p = (uint32_t *) buf;
117
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200118 for (;len > 0; len -= 4)
Stefan Roese887e2ec2006-09-07 11:51:23 +0200119 *p++ = in32(base + NDFC_DATA);
120}
121
122static void ndfc_write_buf(struct mtd_info *mtdinfo, const uint8_t *buf, int len)
123{
Wolfgang Denk511d0c72006-10-09 00:42:01 +0200124 struct nand_chip *this = mtdinfo->priv;
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200125 ulong base = (ulong) this->IO_ADDR_W & 0xfffffffc;
Stefan Roese887e2ec2006-09-07 11:51:23 +0200126 uint32_t *p = (uint32_t *) buf;
127
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200128 for (; len > 0; len -= 4)
Stefan Roese887e2ec2006-09-07 11:51:23 +0200129 out32(base + NDFC_DATA, *p++);
130}
131
132static int ndfc_verify_buf(struct mtd_info *mtdinfo, const uint8_t *buf, int len)
133{
Wolfgang Denk511d0c72006-10-09 00:42:01 +0200134 struct nand_chip *this = mtdinfo->priv;
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200135 ulong base = (ulong) this->IO_ADDR_W & 0xfffffffc;
Stefan Roese887e2ec2006-09-07 11:51:23 +0200136 uint32_t *p = (uint32_t *) buf;
137
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200138 for (; len > 0; len -= 4)
Stefan Roese887e2ec2006-09-07 11:51:23 +0200139 if (*p++ != in32(base + NDFC_DATA))
140 return -1;
141
142 return 0;
143}
144#endif /* #ifndef CONFIG_NAND_SPL */
145
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200146void board_nand_select_device(struct nand_chip *nand, int chip)
147{
Stefan Roese7ade0c62006-10-24 18:06:48 +0200148 /*
149 * Don't use "chip" to address the NAND device,
150 * generate the cs from the address where it is encoded.
151 */
152 int cs = (ulong)nand->IO_ADDR_W & 0x00000003;
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200153 ulong base = (ulong)nand->IO_ADDR_W & 0xfffffffc;
154
155 /* Set NandFlash Core Configuration Register */
156 /* 1col x 2 rows */
Stefan Roese7ade0c62006-10-24 18:06:48 +0200157 out32(base + NDFC_CCR, 0x00000000 | (cs << 24));
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200158}
159
Heiko Schocherfa230442006-12-21 17:17:02 +0100160int board_nand_init(struct nand_chip *nand)
Stefan Roese887e2ec2006-09-07 11:51:23 +0200161{
Stefan Roese7ade0c62006-10-24 18:06:48 +0200162 int cs = (ulong)nand->IO_ADDR_W & 0x00000003;
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200163 ulong base = (ulong)nand->IO_ADDR_W & 0xfffffffc;
164
Stefan Roese887e2ec2006-09-07 11:51:23 +0200165 nand->eccmode = NAND_ECC_SOFT;
166
167 nand->hwcontrol = ndfc_hwcontrol;
168 nand->read_byte = ndfc_read_byte;
169 nand->write_byte = ndfc_write_byte;
170 nand->dev_ready = ndfc_dev_ready;
171
172#ifndef CONFIG_NAND_SPL
173 nand->write_buf = ndfc_write_buf;
174 nand->read_buf = ndfc_read_buf;
175 nand->verify_buf = ndfc_verify_buf;
176#else
177 /*
178 * Setup EBC (CS0 only right now)
179 */
Stefan Roese6f3dfc12007-05-22 12:46:10 +0200180 mtebc(EBC0_CFG, 0xb8400000);
Stefan Roese887e2ec2006-09-07 11:51:23 +0200181
182 mtebc(pb0cr, CFG_EBC_PB0CR);
183 mtebc(pb0ap, CFG_EBC_PB0AP);
184#endif
185
Stefan Roese43a2b0e2006-10-20 14:28:52 +0200186 /*
187 * Select required NAND chip in NDFC
188 */
Stefan Roese7ade0c62006-10-24 18:06:48 +0200189 board_nand_select_device(nand, cs);
190 out32(base + NDFC_BCFG0 + (cs << 2), 0x80002222);
Heiko Schocherfa230442006-12-21 17:17:02 +0100191 return 0;
Stefan Roese887e2ec2006-09-07 11:51:23 +0200192}
193
194#endif